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1.
Cell ; 176(4): 729-742.e18, 2019 02 07.
Artigo em Inglês | MEDLINE | ID: mdl-30661757

RESUMO

Hypothalamic melanocortin neurons play a pivotal role in weight regulation. Here, we examined the contribution of Semaphorin 3 (SEMA3) signaling to the development of these circuits. In genetic studies, we found 40 rare variants in SEMA3A-G and their receptors (PLXNA1-4; NRP1-2) in 573 severely obese individuals; variants disrupted secretion and/or signaling through multiple molecular mechanisms. Rare variants in this set of genes were significantly enriched in 982 severely obese cases compared to 4,449 controls. In a zebrafish mutagenesis screen, deletion of 7 genes in this pathway led to increased somatic growth and/or adiposity demonstrating that disruption of Semaphorin 3 signaling perturbs energy homeostasis. In mice, deletion of the Neuropilin-2 receptor in Pro-opiomelanocortin neurons disrupted their projections from the arcuate to the paraventricular nucleus, reduced energy expenditure, and caused weight gain. Cumulatively, these studies demonstrate that SEMA3-mediated signaling drives the development of hypothalamic melanocortin circuits involved in energy homeostasis.


Assuntos
Metabolismo Energético/genética , Melanocortinas/metabolismo , Semaforinas/genética , Adolescente , Adulto , Animais , Peso Corporal , Linhagem Celular , Criança , Pré-Escolar , Modelos Animais de Doenças , Ingestão de Alimentos , Feminino , Variação Genética/genética , Homeostase , Humanos , Hipotálamo/metabolismo , Leptina/metabolismo , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Pessoa de Meia-Idade , Proteínas do Tecido Nervoso/metabolismo , Neurônios/metabolismo , Obesidade/genética , Obesidade/metabolismo , Receptores de Superfície Celular/metabolismo , Semaforinas/metabolismo , Adulto Jovem , Peixe-Zebra
2.
Mol Metab ; 6(11): 1419-1428, 2017 11.
Artigo em Inglês | MEDLINE | ID: mdl-29107289

RESUMO

OBJECTIVE: Genetic studies in obese rodents and humans can provide novel insights into the mechanisms involved in energy homeostasis. METHODS: In this study, we genetically mapped the chromosomal region underlying the development of severe obesity in a mouse line identified as part of a dominant N-ethyl-N-nitrosourea (ENU) mutagenesis screen. We characterized the metabolic and behavioral phenotype of obese mutant mice and examined changes in hypothalamic gene expression. In humans, we examined genetic data from people with severe early onset obesity. RESULTS: We identified an obese mouse heterozygous for a missense mutation (pR108W) in orthopedia homeobox (Otp), a homeodomain containing transcription factor required for the development of neuroendocrine cell lineages in the hypothalamus, a region of the brain important in the regulation of energy homeostasis. OtpR108W/+ mice exhibit increased food intake, weight gain, and anxiety when in novel environments or singly housed, phenotypes that may be partially explained by reduced hypothalamic expression of oxytocin and arginine vasopressin. R108W affects the highly conserved homeodomain, impairs DNA binding, and alters transcriptional activity in cells. We sequenced OTP in 2548 people with severe early-onset obesity and found a rare heterozygous loss of function variant in the homeodomain (Q153R) in a patient who also had features of attention deficit disorder. CONCLUSIONS: OTP is involved in mammalian energy homeostasis and behavior and appears to be necessary for the development of hypothalamic neural circuits. Further studies will be needed to investigate the contribution of rare variants in OTP to human energy homeostasis.


Assuntos
Proteínas de Homeodomínio/genética , Proteínas de Homeodomínio/metabolismo , Proteínas do Tecido Nervoso/genética , Proteínas do Tecido Nervoso/metabolismo , Sequência de Aminoácidos , Animais , Ansiedade/metabolismo , Sequência de Bases , Encéfalo/metabolismo , Mapeamento Cromossômico , Bases de Dados Genéticas , Feminino , Expressão Gênica , Regulação da Expressão Gênica no Desenvolvimento/genética , Genes Homeobox , Proteínas de Homeodomínio/fisiologia , Humanos , Hipotálamo/metabolismo , Masculino , Camundongos , Proteínas do Tecido Nervoso/fisiologia , Sistemas Neurossecretores/metabolismo , Obesidade/metabolismo , Fatores de Transcrição/genética , Transcriptoma/genética
3.
Science ; 318(5855): 1469-72, 2007 Nov 30.
Artigo em Inglês | MEDLINE | ID: mdl-17991826

RESUMO

Variants in the FTO (fat mass and obesity associated) gene are associated with increased body mass index in humans. Here, we show by bioinformatics analysis that FTO shares sequence motifs with Fe(II)- and 2-oxoglutarate-dependent oxygenases. We find that recombinant murine Fto catalyzes the Fe(II)- and 2OG-dependent demethylation of 3-methylthymine in single-stranded DNA, with concomitant production of succinate, formaldehyde, and carbon dioxide. Consistent with a potential role in nucleic acid demethylation, Fto localizes to the nucleus in transfected cells. Studies of wild-type mice indicate that Fto messenger RNA (mRNA) is most abundant in the brain, particularly in hypothalamic nuclei governing energy balance, and that Fto mRNA levels in the arcuate nucleus are regulated by feeding and fasting. Studies can now be directed toward determining the physiologically relevant FTO substrate and how nucleic acid methylation status is linked to increased fat mass.


Assuntos
DNA/metabolismo , Ácidos Cetoglutáricos/metabolismo , Oxo-Ácido-Liases/genética , Oxo-Ácido-Liases/metabolismo , Dioxigenase FTO Dependente de alfa-Cetoglutarato , Sequência de Aminoácidos , Animais , Encéfalo/enzimologia , Encéfalo/metabolismo , Núcleo Celular/enzimologia , Biologia Computacional , Metilação de DNA , DNA de Cadeia Simples/metabolismo , Ingestão de Alimentos , Metabolismo Energético , Jejum , Compostos Ferrosos/metabolismo , Hipotálamo/enzimologia , Hipotálamo/metabolismo , Masculino , Camundongos , Oxigenases de Função Mista , Dados de Sequência Molecular , Oxo-Ácido-Liases/química , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , Proteínas Recombinantes/metabolismo , Ácido Succínico/metabolismo , Timina/análogos & derivados , Timina/metabolismo
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