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1.
Arch Razi Inst ; 78(1): 181-184, 2023 02.
Artigo em Inglês | MEDLINE | ID: mdl-37312715

RESUMO

PrRP, also known as prolactoliberin, is a bovine hypothalamic extract neurohormone that stimulates prolactin synthesis in a rat pituitary adenoma cell line and lactating rat pituitary cells. PrRP has been shown to control the intake of food and energy expenditure, but it may also have a role in stress sensitivity, reproduction, cardia productivity, secretion of endocrine components, and lately, neuroprotective characteristics, among others. The current study was performed to identify if prolactin-releasing peptide (PrRP) had any effect in increasing anxiety clinical features in rats as an animal model. The study included 114 Wistar handling-acclimated male rats (160 gm, 2 months old); divided randomly into three major groups. The rats were divided randomly into three major groups (38-control animals (38C), and 38-PrRP animals (38P), both were examined using the EPM test to test for stress-related signs, such as fear of height (5 mins duration for each rat). The maze was cleaned with water to eliminate the previous rat odor after the experiment for each rat was completed. The tests were performed between 13:00 to 17:00 of the day. Then, a week later, 38 (19-PrRP animals (19P) and 19-control animals (19C)) were examined using the SP test conducted between 13:00 to 16:00 of the day. Fifteen minutes before EPM, the 38C received intranasal 0.9%-10µl NaCl (per nostril), and 38P received intranasal 10-10mol/l-10 µl PrRP (per nostril), and the anxiety-related signs, such as time spent in open arms (less time means more anxious), during the EPM test were recorded. The 19P and 19C received 10-10mol/l-10µl PrRP and 0.9%-10µl NaCl, respectively, (intranasal, per nostril, and 15 minutes before the SP test, where a stranger rat was placed in a specific cage in front of each of the 19P and 19C animals in a separate cage, in which both cages provided visual and olfactory but no confrontational contact). The results showed that PrRP significantly (P<0.05) decreased the time spent by the treated rats on the open arms. In addition, PrRP revealed significant (P<0.05) decreases in the time spent close to the stranger rat, which means increased anxiety levels. The current findings revealed that prolactin-releasing peptide increases anxiety and decreases sociality in the studied male rats.


Assuntos
Ansiedade , Hormônio Liberador de Prolactina , Animais , Bovinos , Masculino , Ratos , Hormônio Liberador de Prolactina/farmacologia , Ratos Wistar
2.
Endocrinology ; 163(3)2022 03 01.
Artigo em Inglês | MEDLINE | ID: mdl-35085394

RESUMO

Prolactin (PRL), a hormone involved in lactation, is mainly produced and secreted by the lactotrophs of the anterior pituitary (AP) gland. We previously reported a method to generate functional adrenocorticotropic hormone-producing cells by differentiating the AP and hypothalamus simultaneously from human induced pluripotent stem cells (iPSCs). However, PRL-producing cells in the induced AP have not been investigated. Here, we confirmed the presence of PRL-producing cells and evaluated their endocrine functions. We differentiated pituitary cells from human iPSCs using serum-free floating culture of embryoid-like aggregates with quick reaggregation (SFEB-q) method and evaluated the appearance and function of PRL-producing cells. Secretion of PRL from the differentiated aggregates was confirmed, which increased with further culture. Fluorescence immunostaining and immunoelectron microscopy revealed PRL-producing cells and PRL-positive secretory granules, respectively. PRL secretion was promoted by various prolactin secretagogues such as thyrotropin-releasing hormone, vasoactive intestinal peptide, and prolactin-releasing peptide, and inhibited by bromocriptine. Moreover, the presence of tyrosine hydroxylase-positive dopaminergic nerves in the hypothalamic tissue area around the center of the aggregates connecting to PRL-producing cells indicated the possibility of recapitulating PRL regulatory mechanisms through the hypothalamus. In conclusion, we generated pituitary lactotrophs from human iPSCs; these displayed similar secretory responsiveness as human pituitary cells in vivo. In the future, this is expected to be used as a model of human PRL-producing cells for various studies, such as drug discovery, prediction of side effects, and elucidation of tumorigenic mechanisms using disease-specific iPSCs. Furthermore, it may help to develop regenerative medicine for the pituitary gland.


Assuntos
Diferenciação Celular , Células-Tronco Pluripotentes Induzidas/fisiologia , Lactotrofos/fisiologia , Adeno-Hipófise/citologia , Prolactina/biossíntese , Técnicas de Cultura de Células , Linhagem Celular , Proliferação de Células , Células Cultivadas , Feminino , Humanos , Células-Tronco Pluripotentes Induzidas/efeitos dos fármacos , Lactotrofos/efeitos dos fármacos , Hormônio Liberador de Prolactina/farmacologia , Hormônio Liberador de Tireotropina/farmacologia , Peptídeo Intestinal Vasoativo/farmacologia
3.
Front Endocrinol (Lausanne) ; 12: 762826, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34803923

RESUMO

Prolactin-releasing peptide (PrRP), a sort of vital hypothalamic neuropeptide, has been found to exert an enormous function on the food intake of mammals. However, little is known about the functional role of PrRP in teleost. In the present study, two PrRP isoforms and four PrRP receptors were isolated from grass carp. Ligand-receptor selectivity displayed that PrRP1 preferentially binds with PrRP-R1a and PrRP-R1b, while PrRP-R2a and PrRP-R2b were special receptors for PrRP2. Tissue distribution indicated that both PrRPs and PrRP-Rs were highly expressed in the hypothalamus-pituitary-gonad axis and intestine, suggesting a latent function on food intake and reproduction. Using grass carp as a model, we found that food intake could significantly induce hypothalamus PrRP mRNA expression, which suggested that PrRP should be also an anorexigenic peptide in teleost. Interestingly, intraperitoneal (IP) injection of PrRPs could significantly induce serum luteinizing hormone (LH) secretion and pituitary LHß and GtHα mRNA expression in grass carp. Moreover, using primary culture grass carp pituitary cells as a model, we further found that PrRPs could directly induce pituitary LH secretion and synthesis mediated by AC/PKA, PLC/IP3/PKC, and Ca2+/CaM/CaMK-II pathways. Finally, estrogen treatment of prepubertal fish elicited increases in PrRPs and PrPR receptors expression in primary cultured grass carp hypothalamus cells, which further confirmed that the PrRP/PrRPR system may participate in the neuroendocrine control of fish reproduction. These results, taken together, suggest that PrRPs might act as a coupling factor in feeding metabolism and reproductive activities in teleost.


Assuntos
Comportamento Alimentar/fisiologia , Hormônio Liberador de Prolactina/biossíntese , Hormônio Liberador de Prolactina/genética , Reprodução/fisiologia , Sequência de Aminoácidos , Animais , Carpas , Células Cultivadas , Clonagem Molecular/métodos , Feminino , Células HEK293 , Humanos , Hipotálamo/metabolismo , Masculino , Hipófise/metabolismo
4.
Physiol Res ; 70(4): 579-590, 2021 08 31.
Artigo em Inglês | MEDLINE | ID: mdl-34062082

RESUMO

Prolactin-releasing peptide (PrRP) has been proposed to mediate the central satiating effects of cholecystokinin (CCK) through the vagal CCK1 receptor. PrRP acts as an endogenous ligand of G protein-coupled receptor 10 (GPR10), which is expressed at the highest levels in brain areas related to food intake regulation, e.g., the paraventricular hypothalamic nucleus (PVN) and nucleus of the solitary tract (NTS). The NTS and PVN are also significantly activated after peripheral CCK administration. The aim of this study was to determine whether the endogenous PrRP neuronal system in the brain is involved in the central anorexigenic effect of the peripherally administered CCK agonist JMV236 or the CCK1 antagonist devazepide and whether the CCK system is involved in the central anorexigenic effect of the peripherally applied lipidized PrRP analog palm-PrRP31 in fasted lean mice. The effect of devazepide and JMV236 on the anorexigenic effects of palm-PrRP31 as well as devazepide combined with JMV236 and palm-PrRP31 on food intake and Fos cell activation in the PVN and caudal NTS was examined. Our results suggest that the anorexigenic effect of JMV236 is accompanied by activation of PrRP neurons of the NTS in a CCK1 receptor-dependent manner. Moreover, while the anorexigenic effect of palm-PrRP31 was not affected by JMV236, it was partially attenuated by devazepide in fasted mice. The present findings indicate that the exogenously influenced CCK system may be involved in the central anorexigenic effect of peripherally applied palm-PrRP31, which possibly indicates some interaction between the CCK and PrRP neuronal systems.


Assuntos
Depressores do Apetite/administração & dosagem , Colecistocinina/metabolismo , Ingestão de Alimentos/efeitos dos fármacos , Comportamento Alimentar/efeitos dos fármacos , Núcleo Hipotalâmico Paraventricular/efeitos dos fármacos , Hormônio Liberador de Prolactina/análogos & derivados , Núcleo Solitário/efeitos dos fármacos , Animais , Quimiocinas CC/efeitos dos fármacos , Quimiocinas CC/metabolismo , Devazepida/administração & dosagem , Jejum , Antagonistas de Hormônios/administração & dosagem , Injeções Intraperitoneais , Injeções Subcutâneas , Masculino , Camundongos Endogâmicos C57BL , Núcleo Hipotalâmico Paraventricular/metabolismo , Fragmentos de Peptídeos/administração & dosagem , Hormônio Liberador de Prolactina/administração & dosagem , Proteínas Proto-Oncogênicas c-fos/metabolismo , Transdução de Sinais , Sincalida/administração & dosagem , Sincalida/análogos & derivados , Núcleo Solitário/metabolismo
5.
Int J Mol Sci ; 22(9)2021 Apr 24.
Artigo em Inglês | MEDLINE | ID: mdl-33923285

RESUMO

Prolactin-releasing Peptide (PrRP) is a neuropeptide whose receptor is GPR10. Recently, the regulatory role of PrRP in the neuroendocrine field has attracted increasing attention. However, the influence of PrRP on macrophages, the critical housekeeper in the neuroendocrine field, has not yet been fully elucidated. Here, we investigated the effect of PrRP on the transcriptome of mouse bone marrow-derived macrophages (BMDMs) with RNA sequencing, bioinformatics, and molecular simulation. BMDMs were exposed to PrRP (18 h) and were subjected to RNA sequencing. Differentially expressed genes (DEGs) were acquired, followed by GO, KEGG, and PPI analysis. Eight qPCR-validated DEGs were chosen as hub genes. Next, the three-dimensional structures of the proteins encoded by these hub genes were modeled by Rosetta and Modeller, followed by molecular dynamics simulation by the Gromacs program. Finally, the binding modes between PrRP and hub proteins were investigated with the Rosetta program. PrRP showed no noticeable effect on the morphology of macrophages. A total of 410 DEGs were acquired, and PrRP regulated multiple BMDM-mediated functional pathways. Besides, the possible docking modes between PrRP and hub proteins were investigated. Moreover, GPR10 was expressed on the cell membrane of BMDMs, which increased after PrRP exposure. Collectively, PrRP significantly changed the transcriptome profile of BMDMs, implying that PrRP may be involved in various physiological activities mastered by macrophages.


Assuntos
Regulação da Expressão Gênica/efeitos dos fármacos , Macrófagos/metabolismo , Hormônio Liberador de Prolactina/farmacologia , Transcriptoma/efeitos dos fármacos , Animais , Biologia Computacional , Macrófagos/efeitos dos fármacos , Masculino , Camundongos , Camundongos Endogâmicos C57BL
6.
Neuropharmacology ; 180: 108289, 2020 12 01.
Artigo em Inglês | MEDLINE | ID: mdl-32890590

RESUMO

Up to 80% of cancer patients are affected by the cancer anorexia-cachexia syndrome (CACS), which leads to excessive body weight loss, reduced treatment success and increased lethality. The area postrema/nucleus of the solitary tract (AP/NTS) region emerged as a central nervous key structure in this multi-factorial process. Neurons in this area are targeted by cytokines and signal to downstream sites involved in energy homeostasis. NTS neurons expressing prolactin-releasing peptide (PrRP) are implicated in the control of energy intake and hypothalamus-pituitary-adrenal (HPA) axis activation, which contributes to muscle wasting. To explore if brainstem PrRP neurons contribute to CACS, we selectively knocked down PrRP expression in the NTS of hepatoma tumor-bearing rats by an AAV/shRNA gene silencing approach. PrRP knockdown reduced body weight loss and anorexia compared to tumor-bearing controls treated with a non-silencing AAV. Gastrocnemius and total hind limb muscle weight was higher in PrPR knockdown rats. Corticosterone levels were increased in the early phase after tumor induction at day 6 in both groups but returned to baseline levels at day 21 in the PrRP knockdown group. While we did not detect significant changes in gene expression of markers for muscle protein metabolism (MuRF-1, myostatin, mTOR and REDD1), mTOR and REDD1 tended to be lower after disruption PrRP signalling. In conclusion, we identified brainstem PrRP as a possible neuropeptide mediator of CACS in hepatoma tumor-bearing rats. The central and peripheral downstream mechanisms require further investigation and might involve HPA axis activation.


Assuntos
Anorexia/metabolismo , Tronco Encefálico/metabolismo , Caquexia/metabolismo , Carcinoma Hepatocelular/metabolismo , Neoplasias Hepáticas/metabolismo , Hormônio Liberador de Prolactina/metabolismo , Animais , Anorexia/genética , Caquexia/genética , Carcinoma Hepatocelular/genética , Linhagem Celular Tumoral , Técnicas de Silenciamento de Genes/métodos , Neoplasias Hepáticas/genética , Masculino , Hormônio Liberador de Prolactina/deficiência , Hormônio Liberador de Prolactina/genética , Ratos , Ratos Endogâmicos BUF
7.
Int J Mol Sci ; 21(17)2020 Sep 01.
Artigo em Inglês | MEDLINE | ID: mdl-32882929

RESUMO

Prolactin-releasing peptide (PrRP), a natural ligand for the GPR10 receptor, is a neuropeptide with anorexigenic and antidiabetic properties. Due to its role in the regulation of food intake, PrRP is a potential drug for obesity treatment and associated type 2 diabetes mellitus (T2DM). Recently, the neuroprotective effects of lipidized PrRP analogs have been proven. In this study, we focused on the molecular mechanisms of action of natural PrRP31 and its lipidized analog palm11-PrRP31 in the human neuroblastoma cell line SH-SY5Y to describe their cellular signaling and possible anti-apoptotic properties. PrRP31 significantly upregulated the phosphoinositide-3 kinase-protein kinase B/Akt (PI3K-PKB/Akt) and extracellular signal-regulated kinase/cAMP response element-binding protein (ERK-CREB) signaling pathways that promote metabolic cell survival and growth. In addition, we proved via protein kinase inhibitors that activation of signaling pathways is mediated specifically by PrRP31 and its palmitoylated analog. Furthermore, the potential neuroprotective properties were studied through activation of anti-apoptotic pathways of PrRP31 and palm11-PrRP31 using the SH-SY5Y cell line and rat primary neuronal culture stressed with toxic methylglyoxal (MG). The results indicate increased viability of the cells treated with PrRP and palm11-PrRP31 and a reduced degree of apoptosis induced by MG, suggesting their potential use in the treatment of neurological disorders.


Assuntos
Proteínas Reguladoras de Apoptose/metabolismo , Apoptose , Neuroblastoma/tratamento farmacológico , Neuropeptídeos/farmacologia , Fármacos Neuroprotetores/farmacologia , Hormônio Liberador de Prolactina/farmacologia , Humanos , Neuroblastoma/metabolismo , Neuroblastoma/patologia , Neuropeptídeos/química , Fármacos Neuroprotetores/química , Hormônio Liberador de Prolactina/química , Transdução de Sinais , Células Tumorais Cultivadas
8.
J Neuroendocrinol ; 32(11): e12880, 2020 11.
Artigo em Inglês | MEDLINE | ID: mdl-32627906

RESUMO

Dopamine from tuberoinfundibular dopaminergic (TIDA) neurones tonically inhibits prolactin (PRL) secretion. Lactational hyperprolactinaemia is associated with a reduced activity of TIDA neurones. However, it remains controversial whether the suckling-induced PRL surge is driven by an additional decrease in dopamine release or by stimulation from a PRL-releasing factor. In the present study, we further investigated the role of dopamine in the PRL response to suckling. Non-lactating (N-Lac), lactating 4 hour apart from pups (Lac), Lac with pups return and suckling (Lac+S), and post-lactating (P-Lac) rats were evaluated. PRL levels were elevated in Lac rats and increased linearly within 30 minutes of suckling in Lac+S rats. During the rise in PRL levels, dopamine and 3,4-dihydroxyphenylacetic acid (DOPAC) levels in the median eminence (ME) and neurointermediate lobe of the pituitary did not differ between Lac+S and Lac rats. However, dopamine and DOPAC were equally decreased in Lac and Lac+S compared to N-Lac and P-Lac rats. Suckling, in turn, reduced phosphorylation of tyrosine hydroxylase in the ME of Lac+S. Domperidone and bromocriptine were used to block and activate pituitary dopamine D2 receptors, respectively. Domperidone increased PRL secretion in both N-Lac and Lac rats, and suckling elicited a robust surge of PRL over the high basal levels in domperidone-treated Lac+S rats. Conversely, bromocriptine blocked the PRL response to suckling. The findings obtained in the present study provide evidence that dopamine synthesis and release are tonically reduced during lactation, whereas dopamine is still functional with respect to inhibiting PRL secretion. However, there appears to be no further reduction in dopamine release associated with the suckling-induced rise in PRL. Instead, the lower dopaminergic tone during lactation appears to be required to sensitise the pituitary to a suckling-induced PRL-releasing factor.


Assuntos
Animais Lactentes/fisiologia , Dopamina/fisiologia , Hipotálamo/fisiologia , Lactação/fisiologia , Prolactina/metabolismo , Ácido 3,4-Di-Hidroxifenilacético/metabolismo , Animais , Bromocriptina/farmacologia , Domperidona/farmacologia , Dopamina/metabolismo , Agonistas de Dopamina/farmacologia , Antagonistas de Dopamina/farmacologia , Feminino , Hipotálamo/efeitos dos fármacos , Eminência Mediana/efeitos dos fármacos , Eminência Mediana/metabolismo , Adeno-Hipófise Parte Intermédia/efeitos dos fármacos , Adeno-Hipófise Parte Intermédia/metabolismo , Hormônio Liberador de Prolactina/metabolismo , Ratos , Ratos Wistar , Tirosina 3-Mono-Oxigenase/metabolismo
9.
Domest Anim Endocrinol ; 72: 106464, 2020 07.
Artigo em Inglês | MEDLINE | ID: mdl-32279041

RESUMO

Prolactin-releasing peptide (PrRP) increases food intake in birds, whereas it is a potent satiety factor in rodents and fish. The aim of this study was to determine the effects of central injection of PrRP on feeding behaviors and hypothalamic physiology in juvenile Japanese quail (Coturnix japonica). Intracerebroventricular injection of 1,692 pmol of PrRP increased food intake for the first 90 min after injection but did not affect water intake. Quail treated with PrRP displayed more food and drink pecks, less time standing but more perching, and decreased defecations. Prolactin-releasing peptide-injected quail had increased c-Fos immunoreactivity in the dorsomedial nucleus (DMN) and arcuate nucleus (ARC) of the hypothalamus. Hypothalamic neuropeptide Y receptor subtypes 2 and 5 and melanocortin receptor 4 mRNAs were greater in PrRP- than vehicle-injected quail. In the DMN, there was less corticotropin-releasing factor (CRF) mRNA and in the ARC, more CRF mRNA in PrRP- than vehicle-injected chicks. Thus, PrRP increases food intake in quail, which is associated with changes in hypothalamic CRF and neuropeptide Y receptor gene expression and c-Fos-immunolabeled cells in the ARC and DMN.


Assuntos
Coturnix , Comportamento Alimentar/efeitos dos fármacos , Hipotálamo/efeitos dos fármacos , Hormônio Liberador de Prolactina/farmacologia , Animais , Comportamento Animal , Hormônio Liberador da Corticotropina/genética , Hormônio Liberador da Corticotropina/metabolismo , Feminino , Regulação da Expressão Gênica/efeitos dos fármacos , Hipotálamo/fisiologia , Infusões Intraventriculares , Masculino , Proteínas Proto-Oncogênicas c-fos/genética , Proteínas Proto-Oncogênicas c-fos/metabolismo , RNA Mensageiro/genética , RNA Mensageiro/metabolismo
10.
Am J Physiol Regul Integr Comp Physiol ; 318(5): R1014-R1023, 2020 05 01.
Artigo em Inglês | MEDLINE | ID: mdl-32292065

RESUMO

In rats, overnight fasting reduces the ability of systemic cholecystokinin-8 (CCK) to suppress food intake and to activate cFos in the caudal nucleus of the solitary tract (cNTS), specifically within glucagon-like peptide-1 (GLP-1) and noradrenergic (NA) neurons of the A2 cell group. Systemic CCK increases vagal sensory signaling to the cNTS, an effect that is amplified by leptin and reduced by ghrelin. Since fasting reduces plasma leptin and increases plasma ghrelin levels, we hypothesized that peripheral leptin administration and/or antagonism of ghrelin receptors in fasted rats would rescue the ability of CCK to activate GLP-1 neurons and a caudal subset of A2 neurons that coexpress prolactin-releasing peptide (PrRP). To test this, cFos expression was examined in ad libitum-fed and overnight food-deprived (DEP) rats after intraperitoneal CCK, after coadministration of leptin and CCK, or after intraperitoneal injection of a ghrelin receptor antagonist (GRA) before CCK. In fed rats, CCK activated cFos in ~60% of GLP-1 and PrRP neurons. Few or no GLP-1 or PrRP neurons expressed cFos in DEP rats treated with CCK alone, CCK combined with leptin, or GRA alone. However, GRA pretreatment increased the ability of CCK to activate GLP-1 and PrRP neurons and also enhanced the hypophagic effect of CCK in DEP rats. Considered together, these new findings suggest that reduced behavioral sensitivity to CCK in fasted rats is at least partially due to ghrelin-mediated suppression of hindbrain GLP-1 and PrRP neural responsiveness to CCK.


Assuntos
Regulação do Apetite/efeitos dos fármacos , Colecistocinina/administração & dosagem , Ingestão de Alimentos/efeitos dos fármacos , Jejum/metabolismo , Comportamento Alimentar/efeitos dos fármacos , Grelina/sangue , Neurônios/efeitos dos fármacos , Rombencéfalo/efeitos dos fármacos , Animais , Peptídeo 1 Semelhante ao Glucagon/metabolismo , Leptina/sangue , Masculino , Neurônios/metabolismo , Hormônio Liberador de Prolactina/metabolismo , Proteínas Proto-Oncogênicas c-fos/metabolismo , Ratos Sprague-Dawley , Receptores de Grelina/metabolismo , Rombencéfalo/metabolismo , Transdução de Sinais
11.
J Alzheimers Dis ; 67(4): 1187-1200, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-30689580

RESUMO

Alzheimer's disease (AD) is one of the most prevalent neurodegenerative diseases, characterized by the accumulation of extracellular amyloid plaques and intraneuronal neurofibrillary tangles. These tangles mainly consist of hyperphosphorylated tau protein. As it induces tau hyperphosphorylation in vitro and in vivo, hypothermia is a useful tool for screening potential neuroprotective compounds that ameliorate tau pathology. In this study, we examined the effect of prolactin-releasing peptide (PrRP), its lipidized analog palm11-PrRP31 and glucagon-like-peptide-1 agonist liraglutide, substances with anorexigenic and antidiabetic properties, on tau phosphorylation and on the main kinases and phosphatases involved in AD development. Our study was conducted in a neuroblastoma cell line SH-SY5Y and rat primary neuronal cultures under normothermic and hypothermic conditions. Hypothermia induced a significant increase in tau phosphorylation at the pThr212 and pSer396/pSer404 epitopes. The palmitoylated analogs liraglutide and palm11-PrRP31 attenuated tau hyperphosphorylation, suggesting their potential use in the treatment of neurodegenerative diseases.


Assuntos
Liraglutida/farmacologia , Neurônios , Fosforilação/efeitos dos fármacos , Hormônio Liberador de Prolactina/análogos & derivados , Animais , Linhagem Celular , Peptídeo 1 Semelhante ao Glucagon/agonistas , Humanos , Hipotermia Induzida , Doenças Neurodegenerativas/tratamento farmacológico , Doenças Neurodegenerativas/metabolismo , Neurônios/efeitos dos fármacos , Neurônios/metabolismo , Fármacos Neuroprotetores/farmacologia , Hormônio Liberador de Prolactina/farmacologia , Ratos , Proteínas tau/metabolismo
12.
Neuropharmacology ; 144: 377-387, 2019 01.
Artigo em Inglês | MEDLINE | ID: mdl-30428311

RESUMO

Obesity and type 2 diabetes mellitus (T2DM) are important risk factors for Alzheimer's disease (AD). Drugs originally developed for T2DM treatment, e.g., analog of glucagon-like peptide 1 liraglutide, have shown neuroprotective effects in mouse models of AD. We previously examined the neuroprotective properties of palm11-PrRP31, an anorexigenic and glucose-lowering analog of prolactin-releasing peptide, in a mouse model of AD-like Tau pathology, THY-Tau22 mice. Here, we demonstrate the neuroprotective effects of palm11-PrRP31 in double transgenic APP/PS1 mice, a model of AD-like ß-amyloid (Aß) pathology. The 7-8-month-old APP/PS1 male mice were subcutaneously injected with liraglutide or palm11-PrRP31 for 2 months. Both the liraglutide and palm11-PrRP31 treatments reduced the Aß plaque load in the hippocampus. Palm11-PrRP31 also significantly reduced hippocampal microgliosis, consistent with our observations of a reduced Aß plaque load, and reduced cortical astrocytosis, similar to the treatment with liraglutide. Palm11-PrRP31 also tended to increase neurogenesis, as indicated by the number of doublecortin-positive cells in the hippocampus. After the treatment with both anorexigenic compounds, we observed a significant decrease in Tau phosphorylation at Thr231, one of the first epitopes phosphorylated in AD. This effect was probably caused by elevated activity of protein phosphatase 2A subunit C, the main Tau phosphatase. Both liraglutide and palm11-PrRP31 reduced the levels of caspase 3, which has multiple roles in the pathogenesis of AD. Palm11-PrRP31 increased protein levels of the pre-synaptic marker synaptophysin, suggesting that palm11-PrRP31 might help preserve synapses. These results indicate that palm11-PrRP31 has promising potential for the treatment of neurodegenerative diseases.


Assuntos
Doença de Alzheimer/tratamento farmacológico , Amiloidose/tratamento farmacológico , Liraglutida/farmacologia , Fármacos Neuroprotetores/farmacologia , Placa Amiloide/tratamento farmacológico , Hormônio Liberador de Prolactina/análogos & derivados , Doença de Alzheimer/metabolismo , Doença de Alzheimer/patologia , Peptídeos beta-Amiloides/metabolismo , Amiloidose/metabolismo , Amiloidose/patologia , Animais , Modelos Animais de Doenças , Gliose/tratamento farmacológico , Gliose/metabolismo , Gliose/patologia , Hipocampo/efeitos dos fármacos , Hipocampo/metabolismo , Hipocampo/patologia , Humanos , Inflamação/tratamento farmacológico , Inflamação/metabolismo , Inflamação/patologia , Masculino , Camundongos Endogâmicos C57BL , Camundongos Transgênicos , Neurogênese/efeitos dos fármacos , Placa Amiloide/metabolismo , Placa Amiloide/patologia , Distribuição Aleatória , Proteínas tau/metabolismo
13.
Rapid Commun Mass Spectrom ; 32(24): 2099-2105, 2018 Dec 30.
Artigo em Inglês | MEDLINE | ID: mdl-30230090

RESUMO

RATIONALE: In-source decay (ISD) matrix-assisted laser desorption/ionisation (MALDI) mass spectrometry with a 1,5-diaminonaphthalene (1,5-DAN) matrix is used for the structural characterisation of peptides. However, MALDI spectra are intrinsically complicated by the presence of matrix ions, which interfere with the peptide fragments. This may cause false-positive results or reduced sequence coverage. This paper reports investigations of ISD processes in an intermediate pressure MALDI ion source and a protocol for the removal of interfering ions using ion mobility separation (IMS). METHODS: An intermediate pressure MALDI source of a Q-IMS-Q-TOF instrument (Synapt G2) has been employed for the ISD of selected peptides using a 1,5-DAN matrix. RESULTS: Successful coupling of the MALDI source tuned for ISD experiments using IMS is demonstrated. The IMS made it possible to remove interfering matrix ions effectively from the spectra and thus to increase the confidence of spectral interpretation. Extensive fragment series corresponding to N-Cα bond cleavages were observed under optimised conditions; on the other hand, weaker series of ions caused by peptide bond cleavages were prevalent for default conditions and/or the α-hydroxycinnamic acid matrix. CONCLUSIONS: Ion mobility has been used for the elimination of matrix ions. The technique has been applied to top-down sequencing of non-tryptic peptides, such as the human palmitoylated analogue of prolactin-releasing peptide used in recent obesity studies, and human and insect antimicrobial peptides.


Assuntos
Espectrometria de Massas/métodos , Peptídeos/química , Animais , Peptídeos Catiônicos Antimicrobianos/química , Humanos , Insetos , Espectrometria de Massas/instrumentação , Hormônio Liberador de Prolactina/química , Espectrometria de Massas por Ionização e Dessorção a Laser Assistida por Matriz/métodos
14.
Neurochem Int ; 116: 77-84, 2018 06.
Artigo em Inglês | MEDLINE | ID: mdl-29601847

RESUMO

Previous studies indicate that hypothalamic prolactin-releasing peptide (PrRP), signaling via GPR10 and neuropeptide FF2 receptor, is involved in energy homeostasis, stress responses, and cardiovascular regulation. Energy homeostasis depends on the balance between food intake regulation and energy expenditure, in which the hypothalamus plays a key role. The lipidization of PrRP31 with palmitoyl acid allows it to produce its anorexigenic effect after repeated peripheral administration and to reduce body weight and improve metabolic parameters in diet-induced obese (DIO) mice. The aim of this study was to reveal the transient and long-lasting changes in neuronal activity via c-Fos and FosB immunohistochemistry in brain nuclei related to food intake regulation and energy homeostasis during the first days of treatment with a newly designed lipidized analog of PrRP31 (palm11-PrRP31) with promising antiobesity effects. The data revealed that the anorexigenic effect of repeated application of palm11-PrRP31 was associated with delayed but gradually significantly reduced cumulative food intake in mice as well as with a significant reduction in their body weight. Moreover, while the repeated application of palm11-PrRP31 was associated with a significant reduction in acute cell activity in the paraventricular hypothalamic nucleus (PVN) and nucleus of the solitary tract (NTS) compare to its acute treatment, both acute and long-lasting cell activity in the dorsomedial hypothalamic nucleus (DMN) were increased. The data indicate that DMN neurons might be tonically activated after repeated administration of lipidized PrRP analogs that may be associated with the process of long-term adaptation to modified energy homeostasis.


Assuntos
Ingestão de Alimentos/efeitos dos fármacos , Neurônios/metabolismo , Proteínas Proto-Oncogênicas c-fos/metabolismo , Animais , Peso Corporal/efeitos dos fármacos , Núcleo Hipotalâmico Dorsomedial/efeitos dos fármacos , Núcleo Hipotalâmico Dorsomedial/metabolismo , Metabolismo Energético , Hipotálamo/efeitos dos fármacos , Hipotálamo/metabolismo , Lipídeos/farmacologia , Masculino , Camundongos Endogâmicos C57BL , Obesidade/tratamento farmacológico , Hormônio Liberador de Prolactina/metabolismo , Hormônio Liberador de Prolactina/farmacologia
15.
PLoS One ; 12(8): e0183449, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28820912

RESUMO

Analogs of anorexigenic neuropeptides, such as prolactin-releasing peptide (PrRP), have a potential as new anti-obesity drugs. In our previous study, palmitic acid attached to the N-terminus of PrRP enabled its central anorexigenic effects after peripheral administration. In this study, two linkers, γ-glutamic acid at Lys11 and a short, modified polyethylene glycol at the N-terminal Ser and/or Lys11, were applied for the palmitoylation of PrRP31 to improve its bioavailability. These analogs had a high affinity and activation ability to the PrRP receptor GPR10 and the neuropeptide FF2 receptor, as well as short-term anorexigenic effect similar to PrRP palmitoylated at the N-terminus. Two-week treatment with analogs that were palmitoylated through linkers to Lys11 (analogs 1 and 2), but not with analog modified both at the N-terminus and Lys11 (analog 3) decreased body and liver weights, insulin, leptin, triglyceride, cholesterol and free fatty acid plasma levels in a mouse model of diet-induced obesity. Moreover, the expression of uncoupling protein-1 was increased in brown fat suggesting an increase in energy expenditure. In addition, treatment with analogs 1 and 2 but not analog 3 significantly decreased urinary concentrations of 1-methylnicotinamide and its oxidation products N-methyl-2-pyridone-5-carboxamide and N-methyl-4-pyridone-3-carboxamide, as shown by NMR-based metabolomics. This observation confirmed the previously reported increase in nicotinamide derivatives in obesity and type 2 diabetes mellitus and the effectiveness of analogs 1 and 2 in the treatment of these disorders.


Assuntos
Dieta , Obesidade/metabolismo , Peptídeos/farmacologia , Hormônio Liberador de Prolactina/metabolismo , Sequência de Aminoácidos , Animais , Ligação Competitiva , Células CHO , Cricetinae , Cricetulus , Masculino , Metabolômica , Camundongos , Camundongos Endogâmicos C57BL , Ressonância Magnética Nuclear Biomolecular , Obesidade/etiologia , Peptídeos/química , Hormônio Liberador de Prolactina/química , beta-Lactamases/metabolismo
16.
Chembiochem ; 17(10): 908-12, 2016 May 17.
Artigo em Inglês | MEDLINE | ID: mdl-26918308

RESUMO

Chlorinated analogues of Leu and Ile are incorporated during cell-free expression of peptides fused to protein, by exploiting the promiscuity of the natural biosynthetic machinery. They then act as sites for clean and efficient release of the peptides simply by brief heat treatment. Dehydro analogues of Leu and Ile are similarly incorporated as latent sites for peptide release through treatment with iodine under cold conditions. These protocols complement enzyme-catalyzed methods and have been used to prepare calcitonin, gastrin-releasing peptide, cholecystokinin-7, and prolactin-releasing peptide prohormones, as well as analogues substituted with unusual amino acids, thus illustrating their practical utility as alternatives to more traditional chemical peptide synthesis.


Assuntos
Aminoácidos/metabolismo , Técnicas de Química Sintética/métodos , Peptídeos/metabolismo , Sequência de Aminoácidos , Calcitonina/química , Calcitonina/metabolismo , Proteínas de Transporte/genética , Proteínas de Transporte/metabolismo , Sistema Livre de Células , Peptídeo Liberador de Gastrina/química , Peptídeo Liberador de Gastrina/metabolismo , Dados de Sequência Molecular , Peptídeos/química , Hormônio Liberador de Prolactina/química , Hormônio Liberador de Prolactina/metabolismo , Proteínas Recombinantes de Fusão/biossíntese , Proteínas Recombinantes de Fusão/química , Proteínas Recombinantes de Fusão/genética
17.
Peptides ; 75: 109-17, 2016 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-26643957

RESUMO

Obesity is an escalating epidemic, but an effective non-invasive therapy is still scarce. For obesity treatment, anorexigenic neuropeptides are promising tools, but their delivery from the periphery to the brain is complicated by their peptide character. In order to overcome this unfavorable fact, we have applied the lipidization of neuropeptide prolactin-releasing peptide (PrRP), whose strong anorexigenic effect was demonstrated. A palmitoylated analog of human PrRP (h palm-PrRP31) was injected in free-fed Wistar rats by three routes: subcutaneous (s.c.), intraperitoneal (i.p) (both 5 mg/kg) and intravenous (i.v.) (from 0.01 to 0.5 mg/kg). We found a circulating compound in the blood after all three applications with the highest concentration after i.v. administration. This corresponds to the effect on food intake, which was also strongest after i.v. injection. Moreover, this is in agreement with the fact that the expression of c-Fos in specific brain regions involved in food intake regulation was also highest after intravenous application. Pharmacokinetic data are further supported by results obtained from dynamic light scattering and CD spectroscopy. Human palm-PrRP31 analog showed a strong tendency to micellize, and formation of aggregates suggested lower availability after i.p. or s.c. application. We have demonstrated that palm-PrRP influenced food intake even in free fed rats. Not surprisingly, the maximal effect was achieved after the intravenous application even though two orders of magnitude lower dose was used compared to both two other applications. We believe that palm-PrRP could have a potential as an antiobesity drug when its s.c. application would be improved.


Assuntos
Fármacos Antiobesidade/administração & dosagem , Ingestão de Energia/efeitos dos fármacos , Fragmentos de Peptídeos/administração & dosagem , Hormônio Liberador de Prolactina/análogos & derivados , Animais , Fármacos Antiobesidade/metabolismo , Fármacos Antiobesidade/farmacocinética , Encéfalo/metabolismo , Células CHO , Cricetinae , Cricetulus , Avaliação Pré-Clínica de Medicamentos , Humanos , Neurônios/efeitos dos fármacos , Neurônios/metabolismo , Obesidade/tratamento farmacológico , Fragmentos de Peptídeos/metabolismo , Fragmentos de Peptídeos/farmacocinética , Hormônio Liberador de Prolactina/administração & dosagem , Hormônio Liberador de Prolactina/metabolismo , Hormônio Liberador de Prolactina/farmacocinética , Ligação Proteica , Proteínas Proto-Oncogênicas c-fos/metabolismo , Ratos , Receptores Acoplados a Proteínas G/metabolismo
18.
Gen Comp Endocrinol ; 227: 94-100, 2016 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-26130238

RESUMO

Since a peptide with a C-terminal Arg-Phe-NH2 (RFamide peptide) was first identified in the ganglia of the venus clam in 1977, RFamide peptides have been found in the nervous system of both invertebrates and vertebrates. In vertebrates, the RFamide peptide family includes gonadotropin-inhibitory hormone (GnIH), neuropeptide FF (NPFF), prolactin-releasing peptide (PrRP), pyroglutamylated RFamide peptide/26RFamide peptide (QRFP/26RFa), and kisspeptins (kiss1 and kiss2). They are involved in important functions such as the release of hormones, regulation of sexual or social behavior, pain transmission, reproduction, and feeding. In contrast to tetrapods and jawed fish, the information available on RFamide peptides in agnathans and basal chordates is limited, thus preventing further insights into the evolution of RFamide peptides in vertebrates. In this review, we focus on the previous research and recent advances in the studies on RFamide peptides in agnathans and basal chordates. In agnathans, the genes encoding GnIH, NPFF, and PrRP precursors and the mature peptides have been identified in lamprey (Petromyzon marinus) and hagfish (Paramyxine atami). Putative kiss1 and kiss2 genes have also been found in the genome database of lamprey. In basal chordates, namely, in amphioxus (Branchiostoma japonicum), a common ancestral form of GnIH and NPFF genes and their mature peptides, as well as the ortholog of the QRFP gene have been identified. The studies revealed that the number of orthologs of vertebrate RFamide peptides present in agnathans and basal chordates is greater than expected, suggesting that the vertebrate RFamide peptides might have emerged and expanded at an early stage of chordate evolution.


Assuntos
Feiticeiras (Peixe)/metabolismo , Kisspeptinas/metabolismo , Anfioxos/metabolismo , Neuropeptídeos/metabolismo , Petromyzon/metabolismo , Animais , Evolução Biológica , Feiticeiras (Peixe)/genética , Kisspeptinas/genética , Anfioxos/genética , Neuropeptídeos/genética , Oligopeptídeos/genética , Oligopeptídeos/metabolismo , Petromyzon/genética , Hormônio Liberador de Prolactina/genética , Hormônio Liberador de Prolactina/metabolismo
19.
Brain Res ; 1625: 151-8, 2015 Nov 02.
Artigo em Inglês | MEDLINE | ID: mdl-26362395

RESUMO

Energy homeostasis is the result of a balance between energy intake and expenditure, and the hypothalamus plays a key role in the regulation of these processes. The hypothalamic prolactin-releasing peptide (PrRP) is involved in food intake regulation and energy homeostasis, although only its lipidized analogs exert central anorexigenic effects after peripheral administration. The aim of the present study was to delineate the extent of the Fos expression as a marker of neuronal activation within the hypothalamic structures involved in food intake regulation after peripherally administered palmitoylated PrRP31 (palm-PrRP31) and to determine whether the anorexigenic effect of peripherally administered palm-PrRP31 influence the activity of hypocretin (HCRT) and oxytocin (OXY) neurons, i.e., the neuropeptides crucially involved in the regulation of energy homeostasis. The data confirmed an anorexigenic effect of palm-PrRP31 treatment (5mg/kg, s.c.) in mice. In the palm-PrRP31-treated animals, a significant increase in Fos expression was observed in the hypothalamic paraventricular (PVN), dorsomedial (DMN), and arcuate (Arc) nuclei and in the neurons of the nucleus of the solitary tract (NTS). Moreover, significant Fos expression was observed in the lateral hypothalamic area (LHA) HCRT neurons and PVN OXY neurons after palm-PrRP31 administration. The present findings may indicate that palm-PrRP31 may be involved in energy homeostasis via the activation of several hypothalamic structures. Fos activation of the hypothalamic OXY and HCRT neurons in the PVN and LHA emphasizes the importance of the areas mentioned in the central action of palm-PrRP31.


Assuntos
Metabolismo Energético/efeitos dos fármacos , Hipotálamo/citologia , Neurônios/efeitos dos fármacos , Proteínas Oncogênicas v-fos/metabolismo , Hormônio Liberador de Prolactina/farmacologia , Análise de Variância , Animais , Ingestão de Alimentos/efeitos dos fármacos , Hipotálamo/efeitos dos fármacos , Masculino , Camundongos , Orexinas/metabolismo , Ocitocina/metabolismo
20.
Endocrinology ; 155(8): 2996-3004, 2014 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-24877622

RESUMO

Fear responses play evolutionarily beneficial roles, although excessive fear memory can induce inappropriate fear expression observed in posttraumatic stress disorder, panic disorder, and phobia. To understand the neural machineries that underlie these disorders, it is important to clarify the neural pathways of fear responses. Contextual conditioned fear induces freezing behavior and neuroendocrine responses. Considerable evidence indicates that the central amygdala plays an essential role in expression of freezing behavior after contextual conditioned fear. On the other hand, mechanisms of neuroendocrine responses remain to be clarified. The medial amygdala (MeA), which is activated after contextual conditioned fear, was lesioned bilaterally by infusion of N-methyl-d-aspartate after training of fear conditioning. Plasma oxytocin, ACTH, and prolactin concentrations were significantly increased after contextual conditioned fear in sham-lesioned rats. In MeA-lesioned rats, these neuroendocrine responses but not freezing behavior were significantly impaired compared with those in sham-lesioned rats. In contrast, the magnitudes of neuroendocrine responses after exposure to novel environmental stimuli were not significantly different in MeA-lesioned rats and sham-lesioned rats. Contextual conditioned fear activated prolactin-releasing peptide (PrRP)-synthesizing neurons in the medulla oblongata. In MeA-lesioned rats, the percentage of PrRP-synthesizing neurons activated after contextual conditioned fear was significantly decreased. Furthermore, neuroendocrine responses after contextual conditioned fear disappeared in PrRP-deficient mice. Our findings suggest that the MeA-medullary PrRP-synthesizing neuron pathway plays an important role in neuroendocrine responses to contextual conditioned fear.


Assuntos
Tonsila do Cerebelo/fisiologia , Medo/fisiologia , Bulbo/fisiologia , Sistemas Neurossecretores/fisiologia , Hormônio Liberador de Prolactina/fisiologia , Animais , Condicionamento Psicológico , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Vias Neurais/fisiologia , Proteínas Proto-Oncogênicas c-fos/fisiologia , Ratos , Ratos Wistar
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