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1.
Gene ; 814: 146128, 2022 Mar 10.
Artigo em Inglês | MEDLINE | ID: mdl-34971752

RESUMO

Melatonin, an important regulator of mammalian reproduction, is mainly produced in the pineal gland, and granulosa cells (GCs), the main mammalian ovarian secretory cells, synthesize melatonin and express melatonin receptors (MRs) MT1 and MT2. However, studies on melatonin regulation in GCs are lacking in sheep. In this study, we explored the effects of ß-estradiol (E2) on melatonin production and MR expression in GCs. We cultured sheep GCs to analyze the expression of the melatonin rate-limiting enzymes AANAT and HIOMT and the effects of E2 on AANAT, HIOMT, and MR expression and melatonin synthesis. To determine whether estrogen receptors (ERs) mediated E2 action on melatonin secretion and MR expression, we assessed ERA and ERB expression in GCs and observed whether ER antagonists counterbalanced the effects of E2. GCs expressed AANAT and HIOMT mRNA, indicating that they transformed exogenous serotonin into melatonin. E2 inhibited melatonin production by downregulating AANAT, HIOMT, and MRs. GCs expressed ERA and ERB; ERA/ERB inhibitors abolished E2-mediated inhibition of melatonin secretion and MR expression. PHTPP upregulated melatonin secretion and MT1 expression in E2-treated GCs, but did not significantly affect AANAT and MT2 expression. In conclusion, melatonin secretion in GCs was inhibited by E2 through an ERA- and ERB-mediated process.


Assuntos
Estradiol/fisiologia , Células da Granulosa/metabolismo , Melatonina/biossíntese , Receptor MT1 de Melatonina/biossíntese , Receptor MT2 de Melatonina/biossíntese , Acetilserotonina O-Metiltransferasa/genética , Acetilserotonina O-Metiltransferasa/metabolismo , Animais , Arilalquilamina N-Acetiltransferase/genética , Arilalquilamina N-Acetiltransferase/metabolismo , Células Cultivadas , Feminino , Células da Granulosa/enzimologia , Ovinos
2.
Nutrients ; 13(10)2021 Sep 30.
Artigo em Inglês | MEDLINE | ID: mdl-34684482

RESUMO

Sleep is an essential component of overall human health but is so tightly regulated that when disrupted can cause or worsen certain ailments. An important part of this process is the presence of the well-known hormone, melatonin. This compound assists in the governing of sleep and circadian rhythms. Previous studies have postulated that dysregulation of melatonin rhythms is the driving force behind sleep and circadian disorders. A computer-aided search spanning the years of 2015-2020 using the search terms melatonin, circadian rhythm, disorder yielded 52 full text articles that were analyzed. We explored the mechanisms behind melatonin dysregulation and how it affects various disorders. Additionally, we examined associated therapeutic treatments including bright light therapy (BLT) and exogenous forms of melatonin. We found that over the past 5 years, melatonin has not been widely investigated in clinical studies thus there remains large gaps in its potential utilization as a therapy.


Assuntos
Ritmo Circadiano/fisiologia , Melatonina/metabolismo , Animais , Vias Biossintéticas , Ritmo Circadiano/efeitos da radiação , Humanos , Luz , Melatonina/biossíntese , Melatonina/química , Transcrição Gênica
3.
Microb Cell Fact ; 20(1): 170, 2021 Aug 28.
Artigo em Inglês | MEDLINE | ID: mdl-34454478

RESUMO

BACKGROUND: Melatonin has attracted substantial attention because of its excellent prospects for both medical applications and crop improvement. The microbial production of melatonin is a safer and more promising alternative to chemical synthesis approaches. Researchers have failed to produce high yields of melatonin in common heterologous hosts due to either the insolubility or low enzyme activity of proteins encoded by gene clusters related to melatonin biosynthesis. RESULTS: Here, a combinatorial gene pathway for melatonin production was successfully established in Escherichia coli by combining the physostigmine biosynthetic genes from Streptomyces albulus and gene encoding phenylalanine 4-hydroxylase (P4H) from Xanthomonas campestris and caffeic acid 3-O-methyltransferase (COMT) from Oryza sativa. A threefold improvement of melatonin production was achieved by balancing the expression of heterologous proteins and adding 3% glycerol. Further protein engineering and metabolic engineering were conducted to improve the conversion of N-acetylserotonin (NAS) to melatonin. Construction of COMT variant containing C303F and V321T mutations increased the production of melatonin by fivefold. Moreover, the deletion of speD gene increased the supply of S-adenosylmethionine (SAM), an indispensable cofactor of COMT, which doubled the yield of melatonin. In the final engineered strain EcMEL8, the production of NAS and melatonin reached 879.38 ± 71.42 mg/L and 136.17 ± 1.33 mg/L in a shake flask. Finally, in a 2-L bioreactor, EcMEL8 produced 1.06 ± 0.07 g/L NAS and 0.65 ± 0.11 g/L melatonin with tryptophan supplementation. CONCLUSIONS: This study established a novel combinatorial pathway for melatonin biosynthesis in E. coli and provided alternative strategies for improvement of melatonin production.


Assuntos
Escherichia coli/metabolismo , Melatonina/biossíntese , Engenharia Metabólica/métodos , Engenharia de Proteínas/métodos , Escherichia coli/genética
4.
Clin Interv Aging ; 16: 215-224, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-33568902

RESUMO

BACKGROUND: Intervertebral disc degeneration (IDD) was considered to be the pathological basis of intervertebral disc herniation (IDH). However, the plasma melatonin in the IDD cases and healthy controls remained unclear. METHODS: In this case-control study, a total of 71 IDD cases and 54 healthy controls were enrolled between April 2020 and August 2020. The diagnostic effect of plasma melatonin for IDD was detected using receiver operating characteristic curve. The correlations between two continuous variables were detected with the Pearson linear analyses. RESULTS: It was found that lower melatonin concentration was detected in the IDD cases (1.906 ± 1.041 vs 3.072 ± 0.511 pg/mL, P<0.001). Through receiver operating characteristic curve analyses, it was found that plasma melatonin could be used as a diagnostic biomarker for IDD (area under curve=0.808, P<0.001). In advanced correlation analyses, it was found that plasma melatonin concentration was negatively associated with the age, symptom durations, IDD disease severity and proinflammatory factors, including IL-6 and TNF-α concentrations (P<0.05). Comparing with the higher melatonin groups, significantly increased IL-6 (0.601 ± 0.085 vs 0.507 ± 0.167 pg/mL, P=0.028) and TNF-α (3.022 ± 0.286 vs 2.353 ± 0.641, P<0.001) were detected in the patients with lower melatonin concentration. CONCLUSION: The plasma melatonin concentration was significantly decreased in the IDD cases and plasma melatonin could be used as a diagnostic biomarker for IDD. Lower plasma melatonin was associated with longer disease durations, elevated disease severity and higher inflammatory cytokines levels in IDD patients.


Assuntos
Citocinas/biossíntese , Degeneração do Disco Intervertebral/sangue , Melatonina/biossíntese , Adulto , Fatores Etários , Idoso , Biomarcadores , Estudos de Casos e Controles , Feminino , Humanos , Mediadores da Inflamação/metabolismo , Interleucina-6/biossíntese , Degeneração do Disco Intervertebral/fisiopatologia , Masculino , Melatonina/análise , Pessoa de Meia-Idade , Estudos Prospectivos , Curva ROC , Índice de Gravidade de Doença , Fator de Necrose Tumoral alfa/biossíntese
5.
Nutrients ; 14(1)2021 Dec 28.
Artigo em Inglês | MEDLINE | ID: mdl-35010992

RESUMO

Intestinal melatonin exerts diverse biological effects on the body. Our previous research showed that the abundance of the butyrate-producing bacteria, Roseburia, is positively related to the expression of colonic mucosal melatonin. However, the detailed relationship is unclear. Therefore, we aimed to explore whether Roseburia regulates intestinal melatonin and its underlying mechanisms. Male Sprague-Dawley germfree rats were orally administered with or without Roseburia hominis. R. hominis treatment significantly increased the intestinal melatonin level. The concentrations of propionate and butyrate in the intestinal contents were significantly elevated after gavage of R. hominis. Propionate or butyrate treatment increased melatonin, 5-hydroxytryptamine (5-HT), arylalkylamine N-acetyltransferase (AANAT), and phosphorylated cAMP-response element-binding protein (p-CREB) levels. When pretreated with telotristat ethyl, the inhibitor of tryptophan hydroxylase (TPH), or siRNA of Aanat, or 666-15, i.e., an inhibitor of CREB, propionate, or butyrate, could not promote melatonin production in the pheochromocytoma cell line BON-1. Metabolomics analysis showed that propionate and butyrate stimulation regulated levels of some metabolites and some metabolic pathways in BON-1 cell supernatants. In conclusion, propionate and butyrate, i.e., metabolites of R. hominis, can promote intestinal melatonin synthesis by increasing 5-HT levels and promoting p-CREB-mediated Aanat transcription, thereby offering a potential target for ameliorating intestinal diseases.


Assuntos
Arilalquilamina N-Acetiltransferase/metabolismo , Proteína de Ligação a CREB/metabolismo , Clostridiales/química , Melatonina/biossíntese , Transdução de Sinais/efeitos dos fármacos , Animais , Butiratos/farmacologia , Proteína de Ligação a CREB/efeitos dos fármacos , Linhagem Celular Tumoral , Colo/metabolismo , Mucosa Intestinal/metabolismo , Masculino , Fosforilação , Propionatos/farmacologia , Ratos , Ratos Sprague-Dawley , Serotonina/metabolismo
6.
Int J Mol Sci ; 21(19)2020 Sep 28.
Artigo em Inglês | MEDLINE | ID: mdl-32998479

RESUMO

With aging, the nervous system gradually undergoes degeneration. Increased oxidative stress, endoplasmic reticulum stress, mitochondrial dysfunction, and cell death are considered to be common pathophysiological mechanisms of various neurodegenerative diseases (NDDs) such as Alzheimer's disease (AD), Parkinson's disease (PD), Huntington's disease (HD), organophosphate-induced delayed neuropathy (OPIDN), and amyotrophic lateral sclerosis (ALS). Autophagy is a cellular basic metabolic process that degrades the aggregated or misfolded proteins and abnormal organelles in cells. The abnormal regulation of neuronal autophagy is accompanied by the accumulation and deposition of irregular proteins, leading to changes in neuron homeostasis and neurodegeneration. Autophagy exhibits both a protective mechanism and a damage pathway related to programmed cell death. Because of its "double-edged sword", autophagy plays an important role in neurological damage and NDDs including AD, PD, HD, OPIDN, and ALS. Melatonin is a neuroendocrine hormone mainly synthesized in the pineal gland and exhibits a wide range of biological functions, such as sleep control, regulating circadian rhythm, immune enhancement, metabolism regulation, antioxidant, anti-aging, and anti-tumor effects. It can prevent cell death, reduce inflammation, block calcium channels, etc. In this review, we briefly discuss the neuroprotective role of melatonin against various NDDs via regulating autophagy, which could be a new field for future translational research and clinical studies to discover preventive or therapeutic agents for many NDDs.


Assuntos
Envelhecimento/genética , Doença de Alzheimer/prevenção & controle , Esclerose Lateral Amiotrófica/prevenção & controle , Doença de Huntington/prevenção & controle , Melatonina/farmacologia , Doença de Parkinson/prevenção & controle , Envelhecimento/metabolismo , Doença de Alzheimer/genética , Doença de Alzheimer/metabolismo , Doença de Alzheimer/patologia , Esclerose Lateral Amiotrófica/genética , Esclerose Lateral Amiotrófica/metabolismo , Esclerose Lateral Amiotrófica/patologia , Animais , Antioxidantes/metabolismo , Antioxidantes/farmacologia , Autofagia/efeitos dos fármacos , Autofagia/genética , Proteínas Relacionadas à Autofagia/agonistas , Proteínas Relacionadas à Autofagia/genética , Proteínas Relacionadas à Autofagia/metabolismo , Ritmo Circadiano/fisiologia , Humanos , Doença de Huntington/genética , Doença de Huntington/metabolismo , Doença de Huntington/patologia , Melatonina/biossíntese , Sistema Nervoso/efeitos dos fármacos , Sistema Nervoso/metabolismo , Sistema Nervoso/patologia , Neurônios/efeitos dos fármacos , Neurônios/metabolismo , Neurônios/patologia , Fármacos Neuroprotetores/metabolismo , Fármacos Neuroprotetores/farmacologia , Doença de Parkinson/genética , Doença de Parkinson/metabolismo , Doença de Parkinson/patologia , Glândula Pineal/fisiologia
7.
Plant Physiol ; 183(3): 898-914, 2020 07.
Artigo em Inglês | MEDLINE | ID: mdl-32354877

RESUMO

Previous studies have clearly demonstrated that the putative phytohormone melatonin functions directly in many aspects of plant growth and development. In Arabidopsis (Arabidopsis thaliana), the role of melatonin in seed oil and anthocyanin accumulation, and corresponding underlying mechanisms, remain unclear. Here, we found that serotonin N-acetyltransferase1 (SNAT1) and caffeic acid O-methyltransferase (COMT) genes were ubiquitously and highly expressed and essential for melatonin biosynthesis in Arabidopsis developing seeds. We demonstrated that blocking endogenous melatonin biosynthesis by knocking out SNAT1 and/or COMT significantly increased oil and anthocyanin content of mature seeds. In contrast, enhancement of melatonin signaling by exogenous application of melatonin led to a significant decrease in levels of seed oil and anthocyanins. Further gene expression analysis through RNA sequencing and reverse-transcription quantitative PCR demonstrated that the expression of a series of important genes involved in fatty acid and anthocyanin accumulation was significantly altered in snat1-1 comt-1 developing seeds during seed maturation. We also discovered that SNAT1 and COMT significantly regulated the accumulation of both mucilage and proanthocyanidins in mature seeds. These results not only help us understand the function of melatonin and provide valuable insights into the complicated regulatory network controlling oil and anthocyanin accumulation in seeds, but also divulge promising gene targets for improvement of both oil and flavonoids in seeds of oil-producing crops and plants.


Assuntos
Antocianinas/metabolismo , Arabidopsis/genética , Arabidopsis/metabolismo , Arilalquilamina N-Acetiltransferase/genética , Melatonina/biossíntese , Metiltransferases/genética , Sementes/metabolismo , Antocianinas/genética , Arilalquilamina N-Acetiltransferase/metabolismo , Regulação da Expressão Gênica de Plantas , Melatonina/genética , Metiltransferases/metabolismo , Óleos de Plantas/metabolismo , Plantas Geneticamente Modificadas/metabolismo , Sementes/genética , Transdução de Sinais/efeitos dos fármacos , Transdução de Sinais/genética , Fatores de Transcrição/metabolismo
8.
Sci Rep ; 10(1): 4799, 2020 03 16.
Artigo em Inglês | MEDLINE | ID: mdl-32179854

RESUMO

Daily oscillation of the immune system follows the central biological clock outputs control such as melatonin produced by the pineal gland. Despite the literature showing that melatonin is also synthesized by macrophages and T lymphocytes, no information is available regarding the temporal profile of the melatonergic system of immune cells and organs in steady-state. Here, the expression of the enzymes arylalkylamine-N-acetyltransferase (AA-NAT), its phosphorylated form (P-AA-NAT) and acetylserotonin-O-methyltransferase (ASMT) were evaluated in phagocytes and T cells of the bone marrow (BM) and spleen. We also determined how the melatonergic system of these cells is modulated by LPS and the cytokine IL-10. The expression of the melatonergic enzymes showed daily rhythms in BM and spleen cells. Melatonin rhythm in the BM, but not in the spleen, follows P-AA-NAT daily variation. In BM cells, LPS and IL10 induced an increase in melatonin levels associated with the increased expressions of P-AA-NAT and ASMT. In spleen cells, LPS induced an increase in the expression of P-AA-NAT but not of melatonin. Conversely, IL10 induced a significant increase in melatonin production associated with increased AA-NAT/P-AA-NAT expressions. In conclusion, BM and spleen cells present different profiles of circadian production of local melatonin and responses to immune signals.


Assuntos
Células da Medula Óssea/imunologia , Ritmo Circadiano/fisiologia , Interleucina-10/farmacologia , Lipopolissacarídeos/farmacologia , Melatonina/biossíntese , Baço/citologia , Baço/imunologia , Acetilserotonina O-Metiltransferasa/genética , Acetilserotonina O-Metiltransferasa/metabolismo , Animais , Arilalquilamina N-Acetiltransferase/genética , Arilalquilamina N-Acetiltransferase/metabolismo , Células da Medula Óssea/efeitos dos fármacos , Células da Medula Óssea/metabolismo , Células Cultivadas , Expressão Gênica/efeitos dos fármacos , Masculino , Fagócitos/imunologia , Fagócitos/metabolismo , Ratos Wistar , Baço/efeitos dos fármacos , Baço/metabolismo , Linfócitos T/imunologia , Linfócitos T/metabolismo
9.
Mol Cell Biochem ; 462(1-2): 133-155, 2019 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-31451998

RESUMO

Melatonin (N-acetyl-5-methoxy-tryptamine), which is generally considered as pleiotropic and multitasking molecule, secretes from pineal gland at night under normal light or dark conditions. Apart from circadian regulations, Melatonin also has antioxidant, anti-ageing, immunomodulation and anticancer properties. From the epidemiological research, it was postulated that Melatonin has significant apoptotic, angiogenic, oncostatic and anti-proliferative effects on various oncological cells. In this review, the underlying anticancer mechanisms of Melatonin such as stimulation of apoptosis, Melatonin receptors (MT1 and MT2) stimulation, paro-survival signal regulation, the hindering of angiogenesis, epigenetic alteration and metastasis have been discussed with recent findings. The Melatonin utilization as an adjuvant with chemotherapeutic drugs for the reinforcement of therapeutic effects was also discussed. This review precisely emphasizes the anticancer effect of Melatonin on various cancer cells. This review exemplifies the epidemiology and anticancer efficiency of Melatonin with prior attention to the mechanisms of actions.


Assuntos
Antineoplásicos/farmacologia , Melatonina/farmacologia , Animais , Antioxidantes/farmacologia , Ensaios Clínicos como Assunto , Humanos , Melatonina/biossíntese , Melatonina/química
10.
Sci Rep ; 9(1): 10810, 2019 07 25.
Artigo em Inglês | MEDLINE | ID: mdl-31346212

RESUMO

Circadian rhythm in all living organisms is disturbed continuously by artificial light sources and artificial lighting has become a hazard for public health. Circadian rhythm of melatonin maintains high levels of melatonin during the night and low levels during the day. N-acetyltransferase (arylalkylamine N-acetyltransferase, AANAT) is one of the four enzymes required for melatonin synthesis and mtnr1ba is a melatonin receptor-encoding mRNA that is expressed widely in the embryonic brain. Pax7 has important roles during neural crest development and especially xanthophore pigmentation. Due to its diurnal nature, zebrafish provide a special opportunity for research on circadian rhythms that are regulated by melatonin. Here in this study, we showed that when compared with the white light control group, white LED light exposure resulted in loss of yellow pigmentation, decreased body length and locomotor activity, oxidant-antioxidant imbalance and decreased expressions of aanat2, mtnr1ba, and pax7 in zebrafish embryos. Histological analysis of this group revealed disorganization of the spaces among photoreceptor cells, decreased total retinal thickness and photoreceptor cell layer thickness compared with the control group. Artificial lighting pollution has the potential to become an important risk factor for different diseases including cancer especially for industrialized countries, therefore, more studies should be performed and necessary regulations should be made regarding this risk factor.


Assuntos
Ritmo Circadiano/efeitos da radiação , Desenvolvimento Embrionário/efeitos da radiação , Luz , Atividade Motora/efeitos da radiação , Pigmentação/efeitos da radiação , Animais , Arilalquilamina N-Acetiltransferase/metabolismo , Comportamento Animal/fisiologia , Comportamento Animal/efeitos da radiação , Tamanho Corporal/fisiologia , Tamanho Corporal/efeitos da radiação , Ritmo Circadiano/fisiologia , Desenvolvimento Embrionário/fisiologia , Melatonina/biossíntese , Atividade Motora/fisiologia , Fator de Transcrição PAX2/metabolismo , Fotoperíodo , Pigmentação/fisiologia , Peixe-Zebra , Proteínas de Peixe-Zebra/metabolismo
11.
Biochim Biophys Acta Mol Basis Dis ; 1865(6): 1525-1539, 2019 06 01.
Artigo em Inglês | MEDLINE | ID: mdl-30890428

RESUMO

Melatonin, a neuroendocrine hormone synthesized by the pineal gland and cholangiocytes, decreases biliary hyperplasia and liver fibrosis during cholestasis-induced biliary injury via melatonin-dependent autocrine signaling through increased biliary arylalkylamine N-acetyltransferase (AANAT) expression and melatonin secretion, downregulation of miR-200b and specific circadian clock genes. Melatonin synthesis is decreased by pinealectomy (PINX) or chronic exposure to light. We evaluated the effect of PINX or prolonged light exposure on melatonin-dependent modulation of biliary damage/ductular reaction/liver fibrosis. Studies were performed in male rats with/without BDL for 1 week with 12:12 h dark/light cycles, continuous light or after 1 week of PINX. The expression of AANAT and melatonin levels in serum and cholangiocyte supernatant were increased in BDL rats, while decreased in BDL rats following PINX or continuous light exposure. BDL-induced increase in serum chemistry, ductular reaction, liver fibrosis, inflammation, angiogenesis and ROS generation were significantly enhanced by PINX or light exposure. Concomitant with enhanced liver fibrosis, we observed increased biliary senescence and enhanced clock genes and miR-200b expression in total liver and cholangiocytes. In vitro, the expression of AANAT, clock genes and miR-200b was increased in PSC human cholangiocyte cell lines (hPSCL). The proliferation and activation of HHStecs (human hepatic stellate cell lines) were increased after stimulating with BDL cholangiocyte supernatant and further enhanced when stimulated with BDL rats following PINX or continuous light exposure cholangiocyte supernatant via intracellular ROS generation. Conclusion: Melatonin plays an important role in the protection of liver against cholestasis-induced damage and ductular reaction.


Assuntos
Arilalquilamina N-Acetiltransferase/genética , Proteínas CLOCK/genética , Colestase/genética , Cirrose Hepática/genética , Melatonina/biossíntese , MicroRNAs/genética , Animais , Arilalquilamina N-Acetiltransferase/metabolismo , Ductos Biliares Intra-Hepáticos/metabolismo , Ductos Biliares Intra-Hepáticos/patologia , Ductos Biliares Intra-Hepáticos/cirurgia , Proteínas CLOCK/metabolismo , Linhagem Celular , Proliferação de Células/efeitos da radiação , Colestase/metabolismo , Colestase/patologia , Células Epiteliais/metabolismo , Células Epiteliais/efeitos da radiação , Regulação da Expressão Gênica , Células Estreladas do Fígado/metabolismo , Células Estreladas do Fígado/efeitos da radiação , Humanos , Células de Kupffer/metabolismo , Células de Kupffer/efeitos da radiação , Luz , Fígado/metabolismo , Fígado/patologia , Fígado/cirurgia , Cirrose Hepática/metabolismo , Cirrose Hepática/patologia , Masculino , MicroRNAs/metabolismo , Glândula Pineal/metabolismo , Glândula Pineal/efeitos da radiação , Glândula Pineal/cirurgia , Pinealectomia/métodos , Cultura Primária de Células , Ratos , Ratos Endogâmicos F344 , Transdução de Sinais
12.
Reprod Biol Endocrinol ; 17(1): 1, 2019 Jan 03.
Artigo em Inglês | MEDLINE | ID: mdl-30606208

RESUMO

BACKGROUND: Melatonin is an amine hormone that plays an important role in regulating mammalian reproduction. This study aimed to investigate the expression pattern of melatonin synthesis enzymes AANAT and HIOMT and melatonin receptors MT1 and MT2 in sheep cumulus-oocyte complexes (COCs) as well as the change of melatonin level in follicular fluid (FF) during antral follicle development. In this research, we also study the effect of ß-estradiol (E2) on MT1 and MT2 expression as well as melatonin synthesis in COCs so as to lay the foundation for further exploration of the regulation mechanism of melatonin synthesis in the ovary. METHODS: COCs and FF were collected from different size (large follicles (diameter ≥ 5 mm), medium follicles (diameter 2-5 mm), and small follicles (diameter ≤ 2 mm)) of antral follicles in sheep ovaries. To assess whether E2 regulates melatonin synthase and its receptors expression in sheep COCs and whether it is mediated through estrogen receptor (ER) pathway. The collected COCs were cultured in vitro for 24 h and then treat with 1 µM E2 and/or 1 µM ICI182780 (non-selective ER antagonist). The expression of AANAT, HIOMT, MT1 and MT2 mRNA and protein were determined by qRT-PCR and western blot. The melatonin level was determined by ELISA. RESULTS: The expression of AANAT, HIOMT, MT1 and MT2 were significantly higher expression in the COCs of small follicles than in those of large follicles (P < 0.05). However, the melatonin level was significantly higher in large follicle FF than in small follicle FF (P < 0.05). Further, the expression of AANAT, HIOMT, MT1, and MT2 and melatonin production were decreased by E2 treatment (P < 0.05), but when ICI182780 was added, the expression of AANAT, HIOMT, MT1, and MT2 and melatonin production recovered (P < 0.05). CONCLUSIONS: We suggest that sheep COCs can synthesize melatonin, but this ability is decreased with increasing follicle diameter. Furthermore, E2 play an important role in regulated the expression of MT1 and MT2 as well as melatonin synthesis in sheep COCs through the ER pathway.


Assuntos
Células do Cúmulo/metabolismo , Estradiol/farmacologia , Melatonina/biossíntese , Oócitos/metabolismo , Receptores de Melatonina/metabolismo , Ovinos/metabolismo , Animais , Vias Biossintéticas/efeitos dos fármacos , Estradiol/metabolismo , Estradiol/fisiologia , Feminino , Líquido Folicular/metabolismo , Melatonina/metabolismo , Folículo Ovariano/metabolismo , Receptores de Estrogênio/metabolismo
13.
Brain Res ; 1704: 40-46, 2019 02 01.
Artigo em Inglês | MEDLINE | ID: mdl-30222958

RESUMO

A local renin-angiotensin system (RAS) has been postulated in the pineal gland. In addition to angiotensin II (Ang II), other active metabolites have been described. In this study, we aimed to investigate a role for Ang IV in melatonin synthesis and the presence of its proposed (IRAP)/AT4 receptor (insulin-regulated aminopeptidase) in the pineal gland. The effect of Ang IV on melatonin synthesis was investigated in vitro using isolated pinealocytes. IRAP protein expression and activity were evaluated by Western blot and fluorimetry using Leu-4Me-ß-naphthylamide as a substrate. Melatonin was analyzed by HPLC, calcium content by confocal microscopy and cAMP by immunoassay. Ang IV significantly augmented the NE-induced melatonin synthesis to a similar degree as that achieved by Ang II. This Ang IV effect in pinealocytes appears to be mediated by an increase in the intracellular calcium content but not by cAMP. The (IRAP)/AT4 expression and activity were identified in the pineal gland, which were significantly higher in membrane fractions than in soluble fractions. Ang IV significantly reduced IRAP activity in the pineal membrane fractions. The main findings of the present study are as follows: (1) Ang IV potentiates NE-stimulated melatonin production in pinealocytes, (2) the (IRAP)/AT4 receptor is present in the rat pineal gland, and (3) Ang IV inhibits IRAP activity and increases pinealocytes [Ca2+]i. We conclude that Ang IV is an important component of RAS and modulates melatonin synthesis in the rat pineal gland.


Assuntos
Angiotensina II/análogos & derivados , Cistinil Aminopeptidase/metabolismo , Melatonina/biossíntese , Glândula Pineal/metabolismo , Angiotensina II/farmacologia , Animais , Astrócitos/citologia , Astrócitos/efeitos dos fármacos , Astrócitos/metabolismo , Cálcio/metabolismo , Células Cultivadas , Masculino , Glândula Pineal/citologia , Glândula Pineal/efeitos dos fármacos , Ratos , Ratos Wistar
14.
Molecules ; 23(6)2018 May 29.
Artigo em Inglês | MEDLINE | ID: mdl-29844288

RESUMO

In mammals, a master clock is located within the suprachiasmatic nucleus (SCN) of the hypothalamus, a region that receives input from the retina that is transmitted by the retinohypothalamic tract. The SCN controls the nocturnal synthesis of melatonin by the pineal gland that can influence the activity of the clock's genes and be involved in the inhibition of cancer development. On the other hand, in the literature, some papers highlight that artificial light exposure at night (LAN)-induced circadian disruptions promote cancer. In the present review, we summarize the potential mechanisms by which LAN-evoked disruption of the nocturnal increase in melatonin synthesis counteracts its preventive action on human cancer development and progression. In detail, we discuss: (i) the Warburg effect related to tumor metabolism modification; (ii) genomic instability associated with L1 activity; and (iii) regulation of immunity, including regulatory T cell (Treg) regulation and activity. A better understanding of these processes could significantly contribute to new treatment and prevention strategies against hormone-related cancer types.


Assuntos
Relógios Biológicos/efeitos da radiação , Carcinogênese/efeitos da radiação , Regulação Neoplásica da Expressão Gênica/efeitos da radiação , Neoplasias/etiologia , Núcleo Supraquiasmático/efeitos da radiação , Animais , Relógios Biológicos/genética , Relógios Biológicos/imunologia , Proteínas CLOCK/genética , Proteínas CLOCK/imunologia , Proteínas CLOCK/metabolismo , Carcinogênese/genética , Carcinogênese/imunologia , Carcinogênese/metabolismo , Metabolismo Energético/genética , Metabolismo Energético/imunologia , Metabolismo Energético/efeitos da radiação , Regulação Neoplásica da Expressão Gênica/genética , Regulação Neoplásica da Expressão Gênica/imunologia , Instabilidade Genômica/imunologia , Instabilidade Genômica/efeitos da radiação , Humanos , Imunidade Inata/efeitos da radiação , Luz/efeitos adversos , Melatonina/antagonistas & inibidores , Melatonina/biossíntese , Melatonina/imunologia , Neoplasias/genética , Neoplasias/imunologia , Neoplasias/prevenção & controle , Glândula Pineal/imunologia , Glândula Pineal/metabolismo , Glândula Pineal/efeitos da radiação , Retina/imunologia , Retina/metabolismo , Retina/efeitos da radiação , Núcleo Supraquiasmático/imunologia , Núcleo Supraquiasmático/metabolismo , Linfócitos T Reguladores/imunologia , Linfócitos T Reguladores/metabolismo , Linfócitos T Reguladores/efeitos da radiação
15.
PLoS One ; 13(5): e0196952, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29734371

RESUMO

Melatonin is a molecule that can enhance the resistance of plants to abiotic stress. It can alleviate the damage of heavy metal ions, and other chemical substances, changes in temperature and humidity, oxidative stress in higher plants, and enhance resistance of plants to abiotic stress. The transformation of N-Acetyl-5-hydroxy tryptamin into melatonin requires the involvement of methyltransferase. In this study, a methyltransferase gene ZjOMT has been cloned from Zoysia japonica. The gene was induced by aluminum (Al) stress in the leaves and roots of Zoysia japonica, and was up-regulated by 20.86- and 31.18-folds, respectively. The expression of ZjOMT in Escherichia coli increased the content of melatonin by about 8-fold in the recombinant strain compared with that of the empty vector strain. Al resistance test showed that the resistance of recombinant strain BL21-pET32-ZjOMT to Al was significantly higher than that of the empty vector strain BL21-pET32. The survival rate of the recombinant strain expressing ZjOMT was about 100-fold higher than that of the empty vector strain when treated with 0.35 mM Al. These findings suggest that the heterologous expression of ZjOMT improved the resistance of E. coli to Al by increasing the content of melatonin.


Assuntos
Escherichia coli/efeitos dos fármacos , Melatonina/biossíntese , Metiltransferases/genética , Poaceae/genética , Alumínio/toxicidade , Clonagem Molecular , Escherichia coli/genética , Regulação Enzimológica da Expressão Gênica , Metiltransferases/isolamento & purificação , Metiltransferases/metabolismo , Estresse Oxidativo/efeitos dos fármacos , Poaceae/enzimologia , Serotonina/análogos & derivados , Serotonina/metabolismo
16.
Adv Exp Med Biol ; 1074: 53-60, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29721927

RESUMO

Spectral transmittance values in the wavelength range of 300 to 800 nanometers were measured using a spectrophotometer for 18 intraocular lenses (IOLs) including clear (ZCB00) and yellow-tinted (ZCB00V, both from AMO Japan) IOLs with three different lens powers. Also measured were the blue-light irradiance (BLI) values, which might reflect retinal damage caused by sunlight, and the melatonin suppression indices (MSIs), which might reflect the nonvisual photoreception function, through these IOLs. The BLIs (in mWcm-2) calculated were 7.62, 7.50, and 7.46 for the +10-diopter (D), +20-D, and +30-D ZCB00 IOLs, respectively; 4.10, 3.92, and 4.00 for the +10-D, +20-D, and +30-D ZCB00V IOLs, respectively; 5.76 for phakic eyes; and 15.00 for aphakic eyes. The MSIs (in mWcm-2sr-1) calculated were 1.18, 1.19, and 1.18 for the +10-D, +20-D, and +30-D ZCB00 IOLs, respectively; 0.98, 0.94, and 0.95 for the +10-D, +20-D, and +30-D ZCB00V IOLs, respectively; 1.03 for phakic eyes; and 1.21 for aphakic eyes. The data from the six clear IOLs (SA60AT, Alcon Japan; VA-60BBR, Hoya; AU6 K, Kowa, N4-18B, Nidek; X-60, Santen; KS-3Ai, Staar Japan) and seven yellow-tinted IOLs (SN60AT; YA-60BBR, Hoya; AU6N, Kowa; N4-18YG, Nidek; NX-60, Santen; KS-AiN, Staar Japan; XY-1, Hoya) reported previously also were discussed. Compared to aphakic eyes, ZCB00 and ZCB00V IOLs reduce the BLI values by 49-50% and 73-74%, respectively; and currently available ultraviolet-blocking clear and yellow-tinted IOLs reduce the BLI values by 43-82%, respectively. Yellow-tinted IOLs absorb more circadian rhythm-associated light than clear IOLs. Although the data presented in this study cannot be applied directly to IOL implanted in patients, the balance between photoprotection and photoreception must be considered when using IOLs in a clinical setting.


Assuntos
Cor , Lentes Intraoculares , Luz , Espectrofotometria , Afacia Pós-Catarata , Ritmo Circadiano/efeitos da radiação , Fluorescência , Humanos , Técnicas In Vitro , Luz/efeitos adversos , Iluminação , Degeneração Macular/etiologia , Degeneração Macular/prevenção & controle , Concentração Máxima Permitida , Melatonina/biossíntese , Melatonina/metabolismo , Lentes Intraoculares Fácicas , Complicações Pós-Operatórias/etiologia , Complicações Pós-Operatórias/prevenção & controle , Pseudofacia , Luz Solar , Núcleo Supraquiasmático/fisiologia , Núcleo Supraquiasmático/efeitos da radiação , Raios Ultravioleta
17.
J Biophotonics ; 11(8): e201700282, 2018 08.
Artigo em Inglês | MEDLINE | ID: mdl-29227581

RESUMO

Thymic atrophy and the subsequent reduction in T-cell production are the most noticeable age-related changes affecting lymphoid organs in the immune system. In fact, thymic involution has been described as "programmed aging." New therapeutic approaches, such as photobiomodulation (PBM), may reduce or reverse these changes. PBM (also known as low-level laser therapy) involves the delivery of non-thermal levels of red or near-infrared light that are absorbed by mitochondrial chromophores, in order to prevent tissue death and stimulate healing and regeneration. PBM may reverse or prevent thymic involution due to its ability to induce extrapineal melatonin biosynthesis via cyclic adenosine monophosphate (AMP) or NF-kB activation, or alternatively by stimulating bone marrow stem cells that can regenerate the thymus. This perspective puts forward a hypothesis that PBM can alter thymic involution, improve immune functioning in aged people and even extend lifespan.


Assuntos
Envelhecimento/imunologia , Terapia com Luz de Baixa Intensidade , Melatonina/biossíntese , Células-Tronco Mesenquimais/efeitos da radiação , Linfócitos T/metabolismo , Linfócitos T/efeitos da radiação , Timo/imunologia , Animais , Humanos , Células-Tronco Mesenquimais/citologia , Linfócitos T/citologia , Timo/efeitos da radiação
18.
Acta Pharmacol Sin ; 39(4): 597-606, 2018 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-29219947

RESUMO

Dendritic cell nuclear protein-1 (DCNP1) is a protein associated with major depression. In the brains of depression patients, DCNP1 is up-regulated. However, how DCNP1 participates in the pathogenesis of major depression remains unknown. In this study, we first transfected HEK293 cells with EGFP-DCNP1 and demonstrated that the full-length DCNP1 protein was localized in the nucleus, and RRK (the residues 117-119) composed its nuclear localization signal (NLS). An RRK-deletion form of DCNP1 (DCNP1ΔRRK) and truncated form (DCNP11-116), each lacking the RRK residues, did not show the specific nuclear localization like full-length DCNP1 in the cells. A rat glioma cell line C6 can synthesize melatonin, a hormone that plays important roles in both sleep and depression. We then revealed that transfection of C6 cells with full-length DCNP1 but not DCNP1ΔRRK or DCNP11-116 significantly decreased the levels of melatonin. Furthermore, overexpression of full-length DCNP1, but not DCNP1ΔRRK or DCNP11-116, in C6 cells significantly decreased both the mRNA and protein levels of N-acetyltransferase (NAT), a key enzyme in melatonin synthesis. Full-length DCNP1 but not DCNP1ΔRRK or DCNP11-116 was detected to interact with the Nat promoter and inhibited its activity through its E-box motif. Furthermore, full-length DCNP1 but not the mutants interacted with and repressed the transcriptional activity of BMAL1, a transcription factor that transactivates Nat through the E-box motif. In conclusion, we have shown that RRK (the residues 117-119) are the NLS responsible for DCNP1 nuclear localization. Nuclear DCNP1 represses NAT expression and melatonin biosynthesis by interacting with BMAL1 and repressing its transcriptional activity. Our study reveals a connection between the major depression candidate protein DCNP1, circadian system and melatonin biosynthesis, which may contribute to the pathogenesis of depression.


Assuntos
Fatores de Transcrição ARNTL/metabolismo , Acetiltransferases/antagonistas & inibidores , Melatonina/biossíntese , Proteínas Nucleares/metabolismo , Proteínas Repressoras/metabolismo , Fatores de Transcrição ARNTL/genética , Acetiltransferases/genética , Sequência de Aminoácidos , Animais , Linhagem Celular Tumoral , Núcleo Celular/metabolismo , Regulação da Expressão Gênica , Técnicas de Silenciamento de Genes , Células HEK293 , Humanos , Sinais de Localização Nuclear , Proteínas Nucleares/genética , Regiões Promotoras Genéticas , Ligação Proteica , RNA Mensageiro/metabolismo , Ratos , Proteínas Repressoras/genética , Deleção de Sequência , Transcrição Gênica
19.
Pigment Cell Melanoma Res ; 31(3): 354-373, 2018 05.
Artigo em Inglês | MEDLINE | ID: mdl-29239123

RESUMO

Melanopsin photopigments, Opn4x and Opn4m, were evolutionary selected to "see the light" in systems that regulate skin colour change. In this review, we analyse the roles of melanopsins, and how critical evolutionary developments, including the requirement for thermoregulation and ultraviolet protection, the emergence of a background adaptation mechanism in land-dwelling amphibian ancestors and the loss of a photosensitive pineal gland in mammals, may have helped sculpt the mechanisms that regulate light-controlled skin pigmentation. These mechanisms include melanopsin in skin pigment cells directly inducing skin darkening for thermoregulation/ultraviolet protection; melanopsin-expressing eye cells controlling neuroendocrine circuits to mediate background adaptation in amphibians in response to surface-reflected light; and pineal gland secretion of melatonin phased to environmental illuminance to regulate circadian and seasonal variation in skin colour, a process initiated by melanopsin-expressing eye cells in mammals, and by as yet unknown non-visual opsins in the pineal gland of non-mammals.


Assuntos
Regulação da Temperatura Corporal/fisiologia , Olho/metabolismo , Melatonina/biossíntese , Glândula Pineal/metabolismo , Opsinas de Bastonetes/biossíntese , Pigmentação da Pele/fisiologia , Animais , Olho/citologia , Humanos , Glândula Pineal/citologia , Raios Ultravioleta
20.
J Pineal Res ; 63(4)2017 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-28793366

RESUMO

In plants, melatonin production is induced by stimuli such as cold and drought, and cadmium (Cd) is the best elicitor of melatonin production in rice. However, the mechanism by which Cd induces melatonin synthesis in plants remains unknown. We challenged rice seedlings with Cd under different light conditions and found that continuous light produced the highest levels of melatonin, while continuous dark failed to induce melatonin production. Transcriptional and translational induction of tryptophan decarboxylase contributed to the light induction of melatonin during Cd treatment, whereas the protein level of light-induced caffeic acid O-methyltransferase (COMT) was decreased by Cd treatment. In analogy, COMT enzyme activity was inhibited in vitro by Cd in a dose-dependent manner. Notably, the Cd-induced melatonin synthesis was significantly impaired by treatment with either an H2 O2 production inhibitor (DPI) or an NO scavenger (cPTIO). The combination of both inhibitors almost completely abolished Cd-induced melatonin synthesis, suggesting an absolute requirement for H2 O2 and NO. However, neither serotonin nor N-acetylserotonin (NAS) was induced by H2 O2 alone. In contrast, NO significantly induced serotonin production but not NAS or melatonin production. This indicated that serotonin did not enter chloroplasts, where serotonin N-acetyltransferase (SNAT) is constitutively expressed. This suggests that chloroplastidic SNAT expression prevents increased melatonin production after exposure to stress, ultimately leading to the maintenance of a steady-state melatonin level inside cells.


Assuntos
Descarboxilases de Aminoácido-L-Aromático/metabolismo , Melatonina/biossíntese , Metiltransferases/metabolismo , Oryza/metabolismo , Arilalquilamina N-Acetiltransferase/metabolismo , Cádmio/farmacologia , Peróxido de Hidrogênio , Luz , Óxido Nítrico
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