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Human Semaphorin 3 Variants Link Melanocortin Circuit Development and Energy Balance

机译:人类信号素3变体链接Melanocortin电路开发和能量平衡

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摘要

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.
机译:下丘脑黑素旋蛋白神经元在体重调节中起着枢轴作用。在这里,我们研究了信号素3(SEMA3)信号传递到这些电路的开发的贡献。在遗传学研究中,我们发现Sema3a-g及其受体(PLXNA1-4; NRP1-2)在573个严重肥胖的人中发现了40种罕见的变体;变体通过多种分子机制破坏分泌和/或信号传导。与4,449个对照相比,这组基因中的罕见变体显着富集982例。在斑马鱼诱变筛选中,在该途径中删除7个基因导致了体细胞生长和/或肥胖,证明了信号蛋白3信号扰乱能量稳态的破坏。在小鼠中,缺失在Pro-Opiomelanocortin神经元中的神经疏松素-2受体中断其从弧形到椎间盘核,降低能量消耗的突起,并导致体重增加。累积地,这些研究表明SEMA3介导的信号传导驱动涉及能量稳态的下丘脑黑素旋蛋白电路的发育。

著录项

  • 来源
    《Cell》 |2019年第4期|共32页
  • 作者单位

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Southern Calif Saban Res Inst Dev Neurosci Program Ctr Endocrinol Diabet &

    Metab Childrens Hosp Los Los Angeles CA 90027 USA;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Southern Calif Saban Res Inst Dev Neurosci Program Ctr Endocrinol Diabet &

    Metab Childrens Hosp Los Los Angeles CA 90027 USA;

    Univ Cambridge NIHR Cambridge Biomed Res Ctr Wellcome MRC Inst Metab Sci Addenbrookes Hosp Cambridge England;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Edinburgh Queens Med Res Inst Ctr Cardiovasc Sci Edinburgh Midlothian Scotland;

    Univ Cambridge NIHR Cambridge Biomed Res Ctr Wellcome MRC Inst Metab Sci Addenbrookes Hosp Cambridge England;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Cambridge NIHR Cambridge Biomed Res Ctr Wellcome MRC Inst Metab Sci Addenbrookes Hosp Cambridge England;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Southern Calif Saban Res Inst Dev Neurosci Program Ctr Endocrinol Diabet &

    Metab Childrens Hosp Los Los Angeles CA 90027 USA;

    Univ Edinburgh Queens Med Res Inst Ctr Cardiovasc Sci Edinburgh Midlothian Scotland;

    Univ Cambridge Metab Res Labs Cambridge England;

    Univ Oxford Div Struct Biol Wellcome Ctr Human Genet Oxford England;

    Univ Southern Calif Saban Res Inst Dev Neurosci Program Ctr Endocrinol Diabet &

    Metab Childrens Hosp Los Los Angeles CA 90027 USA;

    Univ Cambridge Metab Res Labs Cambridge England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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