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首页> 外文期刊>Science Signaling >Thyroid hormone receptor and ERR. coordinately regulate mitochondrial fission, mitophagy, biogenesis, and function
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Thyroid hormone receptor and ERR. coordinately regulate mitochondrial fission, mitophagy, biogenesis, and function

机译:甲状腺激素受体和错误。 协调调节线粒体裂变,细菌,生物发生和功能

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摘要

Thyroid hormone receptor beta 1 (THRB1) and estrogen-related receptor alpha (ESRRA; also known as ERR alpha) both play important roles in mitochondrial activity. To understand their potential interactions, we performed transcriptome and ChIP-seq analyses and found that many genes that were co-regulated by both THRB1 and ESRRA were involved in mitochondrial metabolic pathways. These included oxidative phosphorylation (OXPHOS), the tricarboxylic acid (TCA) cycle, and beta-oxidation of fatty acids. TH increased ESRRA expression and activity in a THRB1-dependent manner through the induction of the transcriptional coactivator PPARGC1A (also known as PGC1 alpha). Moreover, TH induced mitochondrial biogenesis, fission, and mitophagy in an ESRRA-dependent manner. TH also induced the expression of the autophagy-regulating kinase ULK1 through ESRRA, which then promoted DRP1-mediated mitochondrial fission. In addition, ULK1 activated the docking receptor protein FUNDC1 and its interaction with the autophagosomal protein MAP1LC3B-II to induce mitophagy. siRNA knockdown of ESRRA, ULK1, DRP1, or FUNDC1 inhibited TH-induced autophagic clearance of mitochondria through mitophagy and decreased OXPHOS. These findings show that many of the mitochondrial actions of TH are mediated through stimulation of ESRRA expression and activity, and co-regulation of mitochondrial turnover through the PPARGC1A-ESRRA-ULK1 pathway is mediated by their regulation of mitochondrial fission and mitophagy. Hormonal or pharmacologic induction of ESRRA expression or activity could improve mitochondrial quality in metabolic disorders.
机译:甲状腺激素受体β1(THRB1)和雌激素相关的受体α(ESRRA;也称为ERRα)在线粒体活性中起重要作用。为了了解它们的潜在相互作用,我们进行了转录组和芯片SEQ分析,发现通过THRB1和ESRRA共同调节的许多基因参与了线粒体代谢途径。这些包括氧化磷酸化(汤膦),三羧酸(TCA)循环和脂肪酸的β-氧化。通过诱导转录共膜分子PPARGC1A(也称为PGC1α),以THRB1依赖性方式增加ESRRA表达和活性。此外,以ESRRA依赖性方式诱导线粒体生物发生,裂变和培养基。还诱导了通过ESRRA的自噬调节激酶ULK1的表达,然后促进DRP1介导的线粒体裂变。此外,ULK1活化了对接受体蛋白质基金1及其与自噬复印体蛋白MAP1LC3B-II的相互作用以诱导乳化物。 ESRRA,ULK1,DRP1或FUNDC1的siRNA敲低抑制通过乳化物和降低毒物的线粒体的自噬清除。这些研究结果表明,许多线粒体作用的许多线粒体作用是通过刺激ESRRA表达和活性介导的,并且通过PPARGC1A-ESRRA-ULK1途径的线粒体周转的共调调通过调节线粒体裂变和乳化物调节。 ESRRA表达或活性的激素或药理学诱导可以提高代谢障碍的线粒体质量。

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  • 来源
    《Science Signaling》 |2018年第536期|共17页
  • 作者单位

    Duke Natl Univ Singapore NUS Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat Singapore 169857 Singapore;

    Duke Natl Univ Singapore NUS Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat Singapore 169857 Singapore;

    Duke Natl Univ Singapore NUS Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat Singapore 169857 Singapore;

    Harvard Med Sch Ctr Life Sci Beth Israel Deaconess Med Ctr Div Endocrinol Diabet &

    Metab 330 Brookline Ave Boston MA 02215 USA;

    Duke Natl Univ Singapore NUS Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat Singapore 169857 Singapore;

    Duke Natl Univ Singapore NUS Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat Singapore 169857 Singapore;

    Duke Natl Univ Singapore NUS Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat Singapore 169857 Singapore;

    Duke Natl Univ Singapore NUS Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat Singapore 169857 Singapore;

    Duke Natl Univ Singapore NUS Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat Singapore 169857 Singapore;

    Duke Univ Sch Med Dept Pharmacol &

    Canc Biol Levine Sci Res Ctr C238A Durham NC 27710 USA;

    NUS Yong Loo Lin Sch Med Dept Anat Singapore Singapore;

    McGill Univ Goodman Canc Res Ctr 1160 Pine Ave West Montreal PQ H3A 1A3 Canada;

    NUS Yong Loo Lin Sch Med Dept Anat Singapore Singapore;

    Univ Lyon 1 Univ Lyon CNRS Inst Genom Fonct Lyon Ecole Normale Super Lyon 46 Allee Italie F-69364 Lyon 07 France;

    Duke Natl Univ Singapore NUS Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat Singapore 169857 Singapore;

    Univ Lyon 1 Univ Lyon CNRS Inst Genom Fonct Lyon Ecole Normale Super Lyon 46 Allee Italie F-69364 Lyon 07 France;

    Harvard Med Sch Ctr Life Sci Beth Israel Deaconess Med Ctr Div Endocrinol Diabet &

    Metab 330 Brookline Ave Boston MA 02215 USA;

    Enshu Hosp Dept Internal Med Hamamatsu Shizuoka 4300929 Japan;

    Duke Natl Univ Singapore NUS Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat Singapore 169857 Singapore;

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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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