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脂肪细胞 HIF2α 通过 PKA Cα 调节在米色脂肪细胞中充当恒温器。

Adipocyte HIF2α functions as a thermostat via PKA Cα regulation in beige adipocytes.

机构信息

Center for Adipocyte Structure and Function, Institute of Molecular Biology and Genetics, School of Biological Sciences, Seoul National University, Seoul, South Korea.

School of Software Convergence, Myongji University, Seoul, South Korea.

出版信息

Nat Commun. 2022 Jun 7;13(1):3268. doi: 10.1038/s41467-022-30925-0.

Abstract

Thermogenic adipocytes generate heat to maintain body temperature against hypothermia in response to cold. Although tight regulation of thermogenesis is required to prevent energy sources depletion, the molecular details that tune thermogenesis are not thoroughly understood. Here, we demonstrate that adipocyte hypoxia-inducible factor α (HIFα) plays a key role in calibrating thermogenic function upon cold and re-warming. In beige adipocytes, HIFα attenuates protein kinase A (PKA) activity, leading to suppression of thermogenic activity. Mechanistically, HIF2α suppresses PKA activity by inducing miR-3085-3p expression to downregulate PKA catalytic subunit α (PKA Cα). Ablation of adipocyte HIF2α stimulates retention of beige adipocytes, accompanied by increased PKA Cα during re-warming after cold stimuli. Moreover, administration of miR-3085-3p promotes beige-to-white transition via downregulation of PKA Cα and mitochondrial abundance in adipocyte HIF2α deficient mice. Collectively, these findings suggest that HIF2α-dependent PKA regulation plays an important role as a thermostat through dynamic remodeling of beige adipocytes.

摘要

产热脂肪细胞会产生热量,以在低温环境下维持体温,抵御体温过低。虽然需要严格控制产热以防止能量源枯竭,但调节产热的分子细节尚不完全清楚。在这里,我们证明脂肪细胞缺氧诱导因子α(HIFα)在冷刺激和复温时调节产热功能中起着关键作用。在米色脂肪细胞中,HIFα 会降低蛋白激酶 A(PKA)的活性,从而抑制产热活性。在机制上,HIF2α 通过诱导 miR-3085-3p 的表达来抑制 PKA 活性,从而下调 PKA 催化亚基 α(PKA Cα)。脂肪细胞 HIF2α 的缺失会刺激米色脂肪细胞的保留,伴随着冷刺激后复温时 PKA Cα 的增加。此外,在脂肪细胞 HIF2α 缺失的小鼠中,miR-3085-3p 的给药通过下调 PKA Cα 和线粒体丰度促进米色脂肪向白色脂肪的转变。总之,这些发现表明,HIF2α 依赖性 PKA 调节通过米色脂肪细胞的动态重塑,作为恒温器发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be39/9174489/038350a044f9/41467_2022_30925_Fig1_HTML.jpg

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