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首页> 外文期刊>Journal of molecular cell biology >Lztfl1/BBS17 controls energy homeostasis by regulating the leptin signaling in the hypothalamic neurons
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Lztfl1/BBS17 controls energy homeostasis by regulating the leptin signaling in the hypothalamic neurons

机译:LZTFL1 / BBS17通过调节下丘脑神经元中的瘦素信号来控制能量稳态

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摘要

Leptin receptor (LepRb) signaling pathway in the hypothalamus of the forebrain controls food intake and energy expenditure in response to an altered energy state. Defects in the LepRb signaling pathway can result in leptin-resistance and obesity. Leucine zipper transcription factor like 1 (Lztfl1)/BBS17 is a member of the Bardet-Biedl syndrome (BBS) gene family. Human BBS patients have a wide range of pathologies including obesity. The cellular and molecular mechanisms underlying Lztfl1-regulated obesity are unknown. Here, we generated Lztfl1(f/f) mouse model in which Lztfl1 can be deleted globally and in tissue-specific manner. Global Lztfl1 deficiency resulted in pleiotropic phenotypes including obesity. Lztfl1(-/-) mice are hyperphagic and showed similar energy expenditure as WT littermates. The obese phenotype of Lztfl1(-/-) mice is caused by the loss of Lztfl1 in the brain but not in the adipocytes. Lztfl1(-/-) mice are leptin-resistant. Inactivation of Lztfl1 abolished phosphorylation of Stat3 in the LepRb signaling pathway in the hypothalamus upon leptin stimulation. Deletion of Lztfl1 had no effect on LepRb membrane localization. Furthermore, we observed that Lztfl1(-/-) mouse embryonic fibroblasts (MEFs) have significantly longer cilia than WT MEFs. We identified several proteins that potentially interact with Lztfl1. As these proteins are known to be involved in regulation of actin/cytoskeleton dynamics, we suggest that Lztfl1 may regulate leptin signaling and ciliary structure via these proteins. Our study identified Lztfl1 as a novel player in the LepRb signaling pathway in the hypothalamus that controls energy homeostasis.
机译:瘦素受体(LEPRB)前脑下丘脑中的信号通路控制食物摄入量和能量消耗,以应对改变的能量状态。 LEPRB信号通路中的缺陷可导致瘦素抵抗和肥胖。亮氨酸拉链转录因子如1(LZTFL1)/ BBS17是BARDET-BIEDL综合征(BBS)基因家族的成员。人BBS患者具有广泛的病理学,包括肥胖症。 LZTFL1调节肥胖症的细胞和分子机制是未知的。在这里,我们生成了LZTFL1(F / F)鼠标模型,其中LZTFL1可以全局删除并以组织特异性方式删除。全球LZTFL1缺乏导致包括肥胖在内的脂肪表表型。 LZTFL1( - / - )小鼠是多核,并显示与WT凋落物相似的能源支出。 LZTFL1( - / - )小鼠的肥胖表型是由脑中LZTFL1的损失引起的,但不在脂肪细胞中引起。 LZTFL1( - / - )小鼠是瘦蛋白的。 LZTFL1在瘦蛋白刺激后丘脑中的LEPRB信号通路中的LZTFL1废除磷酸化。 LZTFL1的删除对Leprb膜定位没有影响。此外,我们观察到LZTFL1( - / - )小鼠胚胎成纤维细胞(MEFS)比WT MEFS明显更长。我们确定了几种可能与LZTFL1相互作用的蛋白质。由于已知这些蛋白质参与肌动蛋白/细胞骨架动力学的调节,我们表明LZTFL1可以通过这些蛋白调节瘦素信号和睫状体结构。我们的研究确定了LZTFL1作为Leprb信号通路中的新型球员,在下丘脑中控制能量稳定性。

著录项

  • 来源
    《Journal of molecular cell biology》 |2018年第5期|共9页
  • 作者单位

    Zhejiang Univ Sir Run Run Shaw Hosp Coll Med Dept Surg Oncol Hangzhou 310016 Zhejiang Peoples;

    UT Southwestern Med Ctr Dept Internal Med Dallas TX 75235 USA;

    UT Southwestern Med Ctr Dept Internal Med Dallas TX 75235 USA;

    UT Southwestern Med Ctr Dept Internal Med Dallas TX 75235 USA;

    UT Southwestern Med Ctr Dept Pathol Dallas TX 75235 USA;

    UT Southwestern Med Ctr Dept Internal Med Dallas TX 75235 USA;

    Harbin Med Univ Affiliated Hosp 3 Dept Intens Care Unit Harbin 150081 Heilongjiang Peoples R;

    Harbin Med Univ Affiliated Hosp 3 Dept Intens Care Unit Harbin 150081 Heilongjiang Peoples R;

    Fudan Univ Sate Key Lab Genet Engn Collaborat Innovat Ctr Genet &

    Dev Sch Life Sci Dept;

    UT Southwestern Med Ctr Dept Internal Med Dallas TX 75235 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 R393;
  • 关键词

    obesity; BBS; leptin-resistance; cilia; actin/cytoskeleton;

    机译:肥胖症;BBS;瘦性;纤毛;肌肌瘤/细胞骨架;

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