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1.
Sci Rep ; 14(1): 7813, 2024 04 03.
Artículo en Inglés | MEDLINE | ID: mdl-38565862

RESUMEN

Steatotic liver disease (SLD) is a burgeoning health problem predominantly associated with excessive alcohol consumption, which causes alcohol-related liver disease (ALD), and high caloric intake, which results in metabolic dysfunction-associated SLD (MASLD). The pathogenesis of ALD and MASLD, which can progress from steatohepatitis to more severe conditions such as liver fibrosis, cirrhosis, and hepatocellular carcinoma, is complicated by several factors. Recently, extracellular ATP and adenosine (Ado), as damage-associated molecular patterns, were reported to promote inflammation and liver fibrosis, contributing to SLD pathogenesis. Here, we explored the in vivo dynamics of hepatic extracellular ATP and Ado during the progression of steatohepatitis using a genetically encoded GPCR-activation-based sensor (GRAB) in zebrafish models. We established hepatocyte-specific GRABATP and GRABAdo in zebrafish and investigated the changes in in vivo hepatic extracellular ATP and Ado levels under ALD or MASLD conditions. Disease-specific changes in hepatocyte extracellular ATP and Ado levels were observed, clearly indicating a correlation between hepatocyte extracellular ATP/Ado dynamics and disease progression. Furthermore, clodronate, a vesicular nucleotide transporter inhibitor, alleviated the MASLD phenotype by reducing the hepatic extracellular ATP and Ado content. These findings provide deep insights into extracellular ATP/Ado dynamics in disease progression, suggesting therapeutic potential for ALD and MASLD.


Asunto(s)
Hígado Graso , Neoplasias Hepáticas , Enfermedades Metabólicas , Perciformes , Animales , Pez Cebra , Adenosina , Cirrosis Hepática , Progresión de la Enfermedad , Adenosina Trifosfato
2.
Behav Brain Res ; 464: 114920, 2024 04 27.
Artículo en Inglés | MEDLINE | ID: mdl-38403178

RESUMEN

Epilepsy, a recurrent neurological disorder involving abnormal neurotransmitter kinetics in the brain, has emerged as a global health concern. The mechanism of epileptic seizures is thought to involve a relative imbalance between excitatory and inhibitory neurotransmitters. Despite the recent advances in clinical and basic research on the pathogenesis of epilepsy, the complex relationship between the neurotransmitter changes and behavior with and without antiepileptic drugs (AEDs) during seizures remains unclear. To investigate the effects of AEDs such as levetiracetam (LEV), carbamazepine (CBZ), and fenfluramine (FFR) on key neurotransmitters in the pentylenetetrazol (PTZ)-induced seizures in adult zebrafish, we examined the changes in glutamic acid, gamma-aminobutyric acid (GABA), serotonin (5-HT), 5-hydroxyindoleacetic acid (5-HIAA), choline, acetylcholine, norepinephrine, dopamine (DA), 3,4-dihydroxyphenylacetic acid (DOPAC), and adenosine. In this study, we observed that 5-HT and DA levels in the brain increased immediately after PTZ-induced seizures. Behavioral tests clearly showed that all of these AEDs suppressed the PTZ-induced seizures. Upon treatment of PTZ-induced seizures with these AEDs, CBZ decreased the glutamic acid and FFR increased the GABA levels; however, no neurotransmitter changes were observed in the brain after LEV administration. Thus, we demonstrated a series of neurotransmitter changes linked to behavioral changes during PTZ-induced epileptic seizures when LEV, CBZ, or FFR were administered. These findings will lead to a more detailed understanding of the pathogenesis of epilepsy associated with behavioral and neurotransmitter changes under AED treatment.


Asunto(s)
Anticonvulsivantes , Epilepsia , Animales , Anticonvulsivantes/efectos adversos , Pez Cebra , Pentilenotetrazol/toxicidad , Ácido Glutámico , Serotonina , Convulsiones/inducido químicamente , Convulsiones/tratamiento farmacológico , Carbamazepina/farmacología , Levetiracetam/farmacología , Levetiracetam/uso terapéutico , Ácido gamma-Aminobutírico , Neurotransmisores
3.
Biochem Biophys Res Commun ; 699: 149551, 2024 03 05.
Artículo en Inglés | MEDLINE | ID: mdl-38277730

RESUMEN

V-ATPase is an ATP hydrolysis-driven proton pump involved in the acidification of intracellular organelles and systemic acid-base homeostasis through H+ secretion in the renal collecting ducts. V-ATPase dysfunction is associated with hereditary distal renal tubular acidosis (dRTA). ATP6V1B1 encodes the B1 subunit of V-ATPase that is integral to ATP hydrolysis and subsequent H+ transport. Patients with pathogenic ATP6V1B1 mutations often exhibit an early onset of sensorineural hearing loss. However, the mechanisms underlying this association remain unclear. We employed morpholino oligonucleotide-mediated knockdown and CRISPR/Cas9 gene editing to generate Atp6v1ba-deficient (atp6v1ba-/-) zebrafish as an ortholog model for ATP6V1B1. The atp6v1ba-/- zebrafish exhibited systemic acidosis and significantly smaller otoliths compared to wild-type siblings. Moreover, deficiency in Atp6v1ba led to degeneration of inner ear hair cells, with ultrastructural changes indicative of autophagy. Our findings indicate a critical role of ATP6V1B1 in regulating lysosomal pH and autophagy in hair cells, and the results provide insights into the pathophysiology of sensorineural hearing loss in dRTA. Furthermore, this study demonstrates that the atp6v1ba-/- zebrafish model is a valuable tool for further investigation into disease mechanisms and potential therapies for acidosis-related hearing impairment.


Asunto(s)
Acidosis Tubular Renal , Acidosis , Pérdida Auditiva Sensorineural , Compuestos Organometálicos , ATPasas de Translocación de Protón Vacuolares , Animales , Humanos , Pez Cebra/metabolismo , ATPasas de Translocación de Protón Vacuolares/genética , ATPasas de Translocación de Protón Vacuolares/metabolismo , Pérdida Auditiva Sensorineural/genética , Pérdida Auditiva Sensorineural/patología , Mutación , Acidosis Tubular Renal/genética , Células Ciliadas Auditivas/patología , Concentración de Iones de Hidrógeno , Cabello/metabolismo , Adenosina Trifosfato
4.
Neuroscience ; 528: 37-53, 2023 09 15.
Artículo en Inglés | MEDLINE | ID: mdl-37532013

RESUMEN

Fibromyalgia (FM) is a syndrome characterized by chronic pain with depression as a frequent comorbidity. However, efficient management of the pain and depressive symptoms of FM is lacking. Given that endogenous oxytocin (OXT) contributes to the regulation of pain and depressive disorders, herein, we investigated the role of OXT in an experimental reserpine-induced FM model. In FM model, OXT-monomeric red fluorescent protein 1 (OXT-mRFP1) transgenic rats exhibited increased depressive behavior and sensitivity in a mechanical nociceptive test, suggesting reduced pain tolerance. Additionally, the development of the FM-like phenotype in OXT-mRFP1 FM model rats was accompanied by a significant reduction in OXT mRNA expression in the magnocellular neurons of the paraventricular nucleus. OXT-mRFP1 FM model rats also had significantly fewer tryptophan hydroxylase (TPH)- and tyrosine hydroxylase (TH)-immunoreactive (ir) neurons as well as reduced serotonin and norepinephrine levels in the dorsal raphe and locus coeruleus. To investigate the effects of stimulating the endogenous OXT pathway, rats expressing OXT-human muscarinic acetylcholine receptor (hM3Dq)-mCherry designer receptors exclusively activated by designer drugs (DREADDs) were also assessed in the FM model. Treatment of these rats with clozapine-N-oxide (CNO), an hM3Dq-activating drug, significantly improved characteristic FM model-induced pathophysiological pain, but did not alter depressive-like behavior. The chemogenetically induced effects were reversed by pre-treatment with an OXT receptor antagonist, confirming the specificity of action via the OXT pathway. These results indicate that endogenous OXT may have analgesic effects in FM, and could be a potential target for effective pain management strategies for this disorder.


Asunto(s)
Fibromialgia , Oxitocina , Ratas , Humanos , Animales , Oxitocina/farmacología , Oxitocina/metabolismo , Reserpina/farmacología , Reserpina/metabolismo , Fibromialgia/inducido químicamente , Fibromialgia/metabolismo , Proteínas Luminiscentes/genética , Dolor/metabolismo , Ratas Transgénicas , Neuronas/metabolismo , Receptores de Oxitocina/metabolismo
5.
J Bone Miner Metab ; 39(1): 64-70, 2021 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-32888064

RESUMEN

The receptor-activator of NF-κB ligand (RANKL) and its specific receptor RANK have essential roles in regulating bone metabolism and the immune system. Besides, the RANKL/RANK system plays important roles in multiple physiological and pathophysiological processes such as mammary gland development during pregnancy, cancer development, and bone metastasis. While it has long been known that RANKL and RANK are expressed in the central nervous system (CNS), the physiological roles of RANKL/RANK system in the CNS and the underlying molecular mechanisms have been elucidated recently. Over the last decade, several reports showed that the central RANKL/RANK system plays important roles in regulating body temperature, brain ischemia, autoimmune encephalopathy, feeding behavior, and energy metabolism. In this review, it is provided an updated information regarding the roles of RANKL/RANK system in the CNS.


Asunto(s)
Sistema Nervioso Central/metabolismo , Osteoprotegerina/metabolismo , Ligando RANK/metabolismo , Receptor Activador del Factor Nuclear kappa-B/metabolismo , Animales , Temperatura Corporal , Sistema Nervioso Central/patología , Conducta Alimentaria , Humanos
6.
Biochem Biophys Res Commun ; 525(3): 726-732, 2020 05 07.
Artículo en Inglés | MEDLINE | ID: mdl-32143824

RESUMEN

Fragments of transfer RNA (tRNA), derived either from pre-tRNA or mature tRNA, have been discovered to play an essential role in the pathogenesis of various disorders such as neurodegenerative disease. CLP1 is an RNA kinase involved in tRNA biogenesis, and mutations in its encoding gene are responsible for pontocerebellar hypoplasia type-10. Mutation of the CLP1 gene results in the accumulation of tRNA fragments of several different kinds. These tRNA fragments are expected to be associated with the disease pathogenesis. However, it is still unclear which of the tRNA fragments arising from the CLP1 gene mutation has the greatest impact on the onset of neuronal disease. We found that 5' tRNA fragments derived from tyrosine pre-tRNA (5' Tyr-tRF) caused p53-dependent neuronal cell death predominantly more than other types of tRNA fragment. We also showed that 5' Tyr-tRF bound directly to pyruvate kinase M2 (PKM2). Injection of zebrafish embryos with PKM2 mRNA ameliorated the neuronal defects induced in zebrafish embryos by 5' Tyr-tRF. Our findings partially uncovered a mechanistic link between 5' Tyr-tRF and neuronal cell death that is regulated by PKM2.


Asunto(s)
Neuronas/enzimología , Neuronas/patología , Piruvato Quinasa/metabolismo , Precursores del ARN/metabolismo , Proteína p53 Supresora de Tumor/metabolismo , Tirosina/metabolismo , Animales , Muerte Celular , Diferenciación Celular , Línea Celular , Embrión no Mamífero/metabolismo , Humanos , Pez Cebra/embriología
7.
Cell Res ; 29(7): 579-591, 2019 07.
Artículo en Inglés | MEDLINE | ID: mdl-31133695

RESUMEN

Cancer is a major and still increasing cause of death in humans. Most cancer cells have a fundamentally different metabolic profile from that of normal tissue. This shift away from mitochondrial ATP synthesis via oxidative phosphorylation towards a high rate of glycolysis, termed Warburg effect, has long been recognized as a paradigmatic hallmark of cancer, supporting the increased biosynthetic demands of tumor cells. Here we show that deletion of apoptosis-inducing factor (AIF) in a KrasG12D-driven mouse lung cancer model resulted in a marked survival advantage, with delayed tumor onset and decreased malignant progression. Mechanistically, Aif deletion leads to oxidative phosphorylation (OXPHOS) deficiency and a switch in cellular metabolism towards glycolysis in non-transformed pneumocytes and at early stages of tumor development. Paradoxically, although Aif-deficient cells exhibited a metabolic Warburg profile, this bioenergetic change resulted in a growth disadvantage of KrasG12D-driven as well as Kras wild-type lung cancer cells. Cell-autonomous re-expression of both wild-type and mutant AIF (displaying an intact mitochondrial, but abrogated apoptotic function) in Aif-knockout KrasG12D mice restored OXPHOS and reduced animal survival to the same level as AIF wild-type mice. In patients with non-small cell lung cancer, high AIF expression was associated with poor prognosis. These data show that AIF-regulated mitochondrial respiration and OXPHOS drive the progression of lung cancer.


Asunto(s)
Factor Inductor de la Apoptosis/fisiología , Carcinogénesis/metabolismo , Carcinoma de Pulmón de Células no Pequeñas/metabolismo , Neoplasias Pulmonares/metabolismo , Animales , Carcinoma de Pulmón de Células no Pequeñas/patología , Línea Celular Tumoral , Conjuntos de Datos como Asunto , Progresión de la Enfermedad , Glucólisis , Humanos , Neoplasias Pulmonares/patología , Ratones , Ratones Endogámicos C57BL , Fosforilación Oxidativa
8.
Nature ; 495(7442): 474-80, 2013 Mar 28.
Artículo en Inglés | MEDLINE | ID: mdl-23474986

RESUMEN

CLP1 was the first mammalian RNA kinase to be identified. However, determining its in vivo function has been elusive. Here we generated kinase-dead Clp1 (Clp1(K/K)) mice that show a progressive loss of spinal motor neurons associated with axonal degeneration in the peripheral nerves and denervation of neuromuscular junctions, resulting in impaired motor function, muscle weakness, paralysis and fatal respiratory failure. Transgenic rescue experiments show that CLP1 functions in motor neurons. Mechanistically, loss of CLP1 activity results in accumulation of a novel set of small RNA fragments, derived from aberrant processing of tyrosine pre-transfer RNA. These tRNA fragments sensitize cells to oxidative-stress-induced p53 (also known as TRP53) activation and p53-dependent cell death. Genetic inactivation of p53 rescues Clp1(K/K) mice from the motor neuron loss, muscle denervation and respiratory failure. Our experiments uncover a mechanistic link between tRNA processing, formation of a new RNA species and progressive loss of lower motor neurons regulated by p53.


Asunto(s)
Neuronas Motoras/metabolismo , Neuronas Motoras/patología , ARN de Transferencia de Tirosina/metabolismo , Factores de Transcripción/metabolismo , Esclerosis Amiotrófica Lateral , Animales , Animales Recién Nacidos , Axones/metabolismo , Axones/patología , Muerte Celular , Diafragma/inervación , Pérdida del Embrión , Embrión de Mamíferos/metabolismo , Embrión de Mamíferos/patología , Exones/genética , Femenino , Fibroblastos , Masculino , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Ratones Transgénicos , Atrofia Muscular Espinal , Enfermedades Neuromusculares/metabolismo , Enfermedades Neuromusculares/patología , Estrés Oxidativo , Procesamiento Postranscripcional del ARN , ARN de Transferencia de Tirosina/genética , Proteínas de Unión al ARN , Respiración , Nervios Espinales/citología , Factores de Transcripción/deficiencia , Proteína p53 Supresora de Tumor/metabolismo , Tirosina/genética , Tirosina/metabolismo
10.
Clin Calcium ; 21(8): 1201-8, 2011 Aug.
Artículo en Japonés | MEDLINE | ID: mdl-21814026

RESUMEN

Receptor-activator of NF-κB ligand (RANKL) and its specific receptor RANK are key regulators of bone remodeling, lymph node formation, establishment of the thymic microenviroment, mammary gland development during pregnancy, bone metastasis in cancer and sex-hormone, progestin, -driven breast cancer. RANKL and RANK are also expressed in the central nervous systems (CNS) especially existed in the main region of thermoregulation. Central RANKL injection to the rodents induces fever via PGE(2)/EP3R pathway. This pathway is related with inflammation related fever. On the other hand, female mice with RANK gene deletion in neuron and astrocytes show increased their basal body temperature at the dark phase, which suggests RANKL/RANK system also regulates physiological thremoregulation in female. Not only in rodents but also in human, two children with a homozygous RANK mutation exhibit an abrogated fever response in pneumonia compare with the age-matched children with pneumonia. Thus, the central RANKL/RANK pathway has an important role for thermoregulation.


Asunto(s)
Regulación de la Temperatura Corporal/genética , Temperatura Corporal/genética , Ligando RANK/fisiología , Receptor Activador del Factor Nuclear kappa-B/fisiología , Animales , Femenino , Humanos , Hipotálamo/metabolismo , Hipotálamo/fisiología , Ratones , Ligando RANK/metabolismo
11.
J Mol Med (Berl) ; 89(7): 647-56, 2011 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-21445556

RESUMEN

Receptor-activator of NF-κB ligand (TNFSF11, also known as RANKL, OPGL, TRANCE, and ODF) and its tumor necrosis factor (TNF)-family receptor RANK are essential regulators of bone remodeling, lymph node formation, establishment of the thymic microenvironment, mammary gland development during pregnancy, and bone metastasis in cancer. We have recently also reported that the RANKL/RANK system controls the incidence and onset of sex hormone, progestin-driven breast cancer. RANKL and RANK are also expressed in the central nervous systems where they play an essential role in body temperature regulation. RANKL activates brain regions involved in thermoregulation and induces fever via the COX2-PGE(2)/EP3R pathway. Moreover, female mice with a RANK gene deleted in neurons and astrocytes exhibit increased basal body temperature, suggesting that the RANKL/RANK system also controls physiological thermoregulation in females under the control of sex hormones. This review will summarize the recently emerging role of the RANKL/RANK signaling axis in mammary gland development, cancer metastasis, hormone-derived breast cancer development, and thermal regulation. Furthermore, we will highlight the striking therapeutic potential of this pathway and provide a molecular rationale for consideration of targeting RANKL/RANK in diseases such as breast cancer.


Asunto(s)
Huesos/metabolismo , Ligando RANK/metabolismo , Receptor Activador del Factor Nuclear kappa-B/metabolismo , Animales , Humanos , Sistema Inmunológico/inmunología , Sistema Inmunológico/metabolismo , Lactancia/metabolismo , Neoplasias/metabolismo , Ligando RANK/inmunología , Receptor Activador del Factor Nuclear kappa-B/inmunología , Transducción de Señal/fisiología
12.
Biol Chem ; 391(12): 1365-70, 2010 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-21087090

RESUMEN

The TNF family molecule RANKL and its receptor RANK are key regulators of bone remodeling, lymph node formation, and mammary gland development during pregnancy. RANKL and RANK are also expressed in the central nervous systems (CNS). However, the functional relevance of RANKL/RANK in the brain was entirely unknown. Recently, our group reported that the RANKL/RANK signaling pathway has an essential role in the central regulation of body temperature via the prostaglandin axis. This review discusses novel aspects of the RANKL/RANK system as key regulators of fever and female basal body temperature in the CNS.


Asunto(s)
Ligando RANK/fisiología , Receptor Activador del Factor Nuclear kappa-B/fisiología , Animales , Temperatura Corporal , Remodelación Ósea , Sistema Nervioso Central/fisiopatología , Femenino , Fiebre/fisiopatología , Humanos , Modelos Biológicos , Osteoclastos/metabolismo , Prostaglandinas/metabolismo , Transducción de Señal
13.
Nature ; 468(7320): 98-102, 2010 Nov 04.
Artículo en Inglés | MEDLINE | ID: mdl-20881962

RESUMEN

Breast cancer is one of the most common cancers in humans and will on average affect up to one in eight women in their lifetime in the United States and Europe. The Women's Health Initiative and the Million Women Study have shown that hormone replacement therapy is associated with an increased risk of incident and fatal breast cancer. In particular, synthetic progesterone derivatives (progestins) such as medroxyprogesterone acetate (MPA), used in millions of women for hormone replacement therapy and contraceptives, markedly increase the risk of developing breast cancer. Here we show that the in vivo administration of MPA triggers massive induction of the key osteoclast differentiation factor RANKL (receptor activator of NF-κB ligand) in mammary-gland epithelial cells. Genetic inactivation of the RANKL receptor RANK in mammary-gland epithelial cells prevents MPA-induced epithelial proliferation, impairs expansion of the CD49f(hi) stem-cell-enriched population, and sensitizes these cells to DNA-damage-induced cell death. Deletion of RANK from the mammary epithelium results in a markedly decreased incidence and delayed onset of MPA-driven mammary cancer. These data show that the RANKL/RANK system controls the incidence and onset of progestin-driven breast cancer.


Asunto(s)
Neoplasias Mamarias Experimentales/inducido químicamente , Neoplasias Mamarias Experimentales/patología , Progestinas/efectos adversos , Ligando RANK/metabolismo , Animales , Apoptosis/efectos de la radiación , Diferenciación Celular , Proliferación Celular/efectos de los fármacos , Daño del ADN , Células Epiteliales/citología , Células Epiteliales/efectos de los fármacos , Células Epiteliales/metabolismo , Células Epiteliales/efectos de la radiación , Femenino , Rayos gamma , Integrina alfa6/metabolismo , Neoplasias Mamarias Experimentales/genética , Neoplasias Mamarias Experimentales/metabolismo , Acetato de Medroxiprogesterona/administración & dosificación , Acetato de Medroxiprogesterona/efectos adversos , Ratones , FN-kappa B/metabolismo , Osteoclastos/citología , Fosfoproteínas/análisis , Fosfoproteínas/inmunología , Progestinas/administración & dosificación , Ligando RANK/deficiencia , Ligando RANK/genética , Receptor Activador del Factor Nuclear kappa-B/deficiencia , Receptor Activador del Factor Nuclear kappa-B/genética , Receptor Activador del Factor Nuclear kappa-B/metabolismo , Transducción de Señal , Células Madre/citología , Células Madre/efectos de los fármacos , Células Madre/metabolismo
14.
Nature ; 462(7272): 505-9, 2009 Nov 26.
Artículo en Inglés | MEDLINE | ID: mdl-19940926

RESUMEN

Receptor-activator of NF-kappaB ligand (TNFSF11, also known as RANKL, OPGL, TRANCE and ODF) and its tumour necrosis factor (TNF)-family receptor RANK are essential regulators of bone remodelling, lymph node organogenesis and formation of a lactating mammary gland. RANKL and RANK are also expressed in the central nervous system. However, the functional relevance of RANKL/RANK in the brain was entirely unknown. Here we report that RANKL and RANK have an essential role in the brain. In both mice and rats, central RANKL injections trigger severe fever. Using tissue-specific Nestin-Cre and GFAP-Cre rank(floxed) deleter mice, the function of RANK in the fever response was genetically mapped to astrocytes. Importantly, Nestin-Cre and GFAP-Cre rank(floxed) deleter mice are resistant to lipopolysaccharide-induced fever as well as fever in response to the key inflammatory cytokines IL-1beta and TNFalpha. Mechanistically, RANKL activates brain regions involved in thermoregulation and induces fever via the COX2-PGE(2)/EP3R pathway. Moreover, female Nestin-Cre and GFAP-Cre rank(floxed) mice exhibit increased basal body temperatures, suggesting that RANKL and RANK control thermoregulation during normal female physiology. We also show that two children with RANK mutations exhibit impaired fever during pneumonia. These data identify an entirely novel and unexpected function for the key osteoclast differentiation factors RANKL/RANK in female thermoregulation and the central fever response in inflammation.


Asunto(s)
Regulación de la Temperatura Corporal/efectos de los fármacos , Regulación de la Temperatura Corporal/fisiología , Fiebre/inducido químicamente , Fiebre/metabolismo , Ligando RANK/farmacología , Receptor Activador del Factor Nuclear kappa-B/metabolismo , Caracteres Sexuales , Animales , Astrocitos/efectos de los fármacos , Astrocitos/metabolismo , Niño , Dinoprostona/metabolismo , Femenino , Fiebre/complicaciones , Perfilación de la Expresión Génica , Humanos , Inyecciones Intraventriculares , Masculino , Ratones , Ratones Endogámicos C57BL , Neumonía/complicaciones , Neumonía/metabolismo , Ligando RANK/administración & dosificación , Ligando RANK/antagonistas & inhibidores , Ligando RANK/metabolismo , Ratas , Ratas Wistar , Receptor Activador del Factor Nuclear kappa-B/genética , Receptores de Prostaglandina E/metabolismo , Subtipo EP3 de Receptores de Prostaglandina E
15.
FEBS Lett ; 580(14): 3485-8, 2006 Jun 12.
Artículo en Inglés | MEDLINE | ID: mdl-16716306

RESUMEN

Neuromedin U (NMU), an anorexigenic peptide, was originally isolated from porcine spinal cord in 1985. As NMU is abundant in the anterior pituitary gland, we investigated the effects of NMU on gonadotropin secretion. Both NMU and its receptors, NMUR1 and NMUR2, were expressed in the pituitary gland. NMU suppressed LH and FSH releases from rat anterior pituitary cells. Moreover, NMU-deficient mice exhibit an early onset of vaginal opening. The LHbeta/FSHbeta ratio, which is an index of puberty onset, is high in young NMU-deficient mice. These results indicate that NMU suppresses gonadotropin secretion and regulates the onset of puberty.


Asunto(s)
Gonadotropinas/metabolismo , Neuropéptidos/fisiología , Maduración Sexual , Animales , Secuencia de Bases , Células Cultivadas , Cartilla de ADN , Femenino , Hormona Folículo Estimulante/genética , Hormona Folículo Estimulante/metabolismo , Hormona Liberadora de Gonadotropina/genética , Hormona Liberadora de Gonadotropina/metabolismo , Hipotálamo/metabolismo , Hormona Luteinizante/genética , Hormona Luteinizante/metabolismo , Ratones , Ratones Noqueados , Neuropéptidos/genética , Neuropéptidos/metabolismo , Adenohipófisis/citología , Adenohipófisis/metabolismo , ARN Mensajero/genética , Ratas
16.
J Bone Miner Res ; 20(5): 790-8, 2005 May.
Artículo en Inglés | MEDLINE | ID: mdl-15824852

RESUMEN

UNLABELLED: To clarify the role of ghrelin in bone metabolism, we examined the effect of ghrelin in vitro and in vivo. Ghrelin and its receptor, GHS-R1a, were identified in osteoblasts, and ghrelin promoted both proliferation and differentiation. Furthermore, ghrelin increased BMD in rats. Our results show that ghrelin directly affects bone formation. INTRODUCTION: Ghrelin is a gut peptide involved in growth hormone (GH) secretion and energy homeostasis. Recently, it has been reported that the adipocyte-derived hormone leptin, which also regulates energy homeostasis and opposes ghrelin's actions in energy homeostasis, plays a significant role in bone metabolism. This evidence implies that ghrelin may modulate bone metabolism; however, it has not been clarified. To study the role of ghrelin in skeletal integrity, we examined its effects on bone metabolism both in vitro and in vivo. MATERIALS AND METHODS: We measured the expression of ghrelin and growth hormone secretagogue receptor 1a (GHS-R1a) in rat osteoblasts using RT-PCR and immunohistochemistry (IHC). The effect of ghrelin on primary osteoblast-like cell proliferation was examined by recording changes in cell number and the level of DNA synthesis. Osteoblast differentiation markers (Runx2, collagen alpha1 type I [COLI], alkaline phosphatase [ALP], osteocalcin [OCN]) were analyzed using quantitative RT-PCR. We also examined calcium accumulation and ALP activity in osteoblast-like cells induced by ghrelin. Finally, to address the in vivo effects of ghrelin on bone metabolism, we examined the BMD of Sprague-Dawley (SD) rats and genetically GH-deficient, spontaneous dwarf rats (SDR). RESULTS: Ghrelin and GHS-R1a were identified in osteoblast-like cells. Ghrelin significantly increased osteoblast-like cell numbers and DNA synthesis in a dose-dependent manner. The proliferative effects of ghrelin were suppressed by [D-Lys(3)]-GHRP-6, an antagonist of GHS-R1a, in a dose-dependent manner. Furthermore, ghrelin increased the expression of osteoblast differentiation markers, ALP activity, and calcium accumulation in the matrix. Finally, ghrelin definitely increased BMD of both SD rats and SDRs. CONCLUSIONS: These observations show that ghrelin directly stimulates bone formation.


Asunto(s)
Desarrollo Óseo , Huesos/fisiología , Hormonas Peptídicas/fisiología , Adipocitos/metabolismo , Fosfatasa Alcalina/metabolismo , Animales , Densidad Ósea , Calcio/metabolismo , Diferenciación Celular , Proliferación Celular , Células Cultivadas , Colágeno Tipo I/biosíntesis , Cadena alfa 1 del Colágeno Tipo I , Subunidad alfa 1 del Factor de Unión al Sitio Principal , Medio de Cultivo Libre de Suero/farmacología , ADN/metabolismo , Relación Dosis-Respuesta a Droga , Ghrelina , Inmunohistoquímica , Leptina/metabolismo , Proteínas de Neoplasias/biosíntesis , Osteoblastos/metabolismo , Osteocalcina/metabolismo , Hormonas Peptídicas/metabolismo , ARN Mensajero/metabolismo , Ratas , Ratas Sprague-Dawley , Receptores Acoplados a Proteínas G/metabolismo , Receptores de Ghrelina , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa , Factores de Tiempo , Factores de Transcripción/biosíntesis
17.
Biochem Biophys Res Commun ; 318(1): 156-61, 2004 May 21.
Artículo en Inglés | MEDLINE | ID: mdl-15110767

RESUMEN

Immunohistochemical analysis revealed the presence of a gut-brain peptide, neuromedin U (NMU), in the suprachiasmatic nucleus (SCN), which is the site of the master circadian oscillator. The expression of NMU mRNA exhibited a circadian rhythm, with the peak expression in the SCN occurring at CT4-8h. The two NMU-binding receptors (NMU-R1 and NMU-R2) were also expressed in the SCN, but their phase angles were different. Intracerebroventricular injection (ICV) of NMU induced the expression of Fos protein in the SCN cells and caused a phase-dependent phase shift of the circadian locomotor activity rhythm. The magnitude of the phase shift was dose dependent. This NMU-induced phase shift was of the nonphotic type. Quantitative reverse transcriptase-polymerase chain reaction (RT-PCR) analysis revealed increases in the expression in the SCN of immediate early genes, such as c-fos, NGFI-A, NGFI-B, and JunB. Furthermore, ICV injection of NMU increased the expression of Per1, but not Per2, in the SCN. These results indicate that NMU may play some important role in the circadian oscillator by exerting an autocrine or paracrine action in the SCN.


Asunto(s)
Ritmo Circadiano/fisiología , Neuropéptidos/fisiología , Animales , Proteínas de Ciclo Celular , Expresión Génica , Genes fos/genética , Genes jun/genética , Proteínas Inmediatas-Precoces/biosíntesis , Inmunohistoquímica , Inyecciones Intraventriculares , Masculino , Proteínas de la Membrana/biosíntesis , Neuronas/metabolismo , Proteínas Nucleares/biosíntesis , Proteínas Circadianas Period , ARN Mensajero/biosíntesis , Ratas , Ratas Wistar , Receptores de Neurotransmisores/biosíntesis , Núcleo Supraquiasmático/metabolismo , Factores de Transcripción
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