Spop缺乏损害小鼠的脂肪生成和促进产热能力。

IF 4 2区 生物学 Q1 GENETICS & HEREDITY PLoS Genetics Pub Date : 2024-12-16 eCollection Date: 2024-12-01 DOI:10.1371/journal.pgen.1011514
Qinghe Li, Yuhong Liu, Yuanyuan Wang, Qi Zhang, Na Zhang, Danli Song, Fei Wang, Qianmei Gao, Yuxin Chen, Gaomeng Zhang, Jie Wen, Guiping Zhao, Li Chen, Yu Gao
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引用次数: 0

摘要

作为决定 Cul3-SPOP-Rbx1 E3 连接酶复合物底物特异性的适配蛋白,SPOP 参与了许多生物过程。然而,人们对其与脂肪生成和产热之间的生理联系仍然知之甚少。在目前的研究中,我们发现有条件地敲除小鼠的 Spop 会导致蛋白质表达发生重大变化,包括与产热相关的关键因子 UCP1 的上调。SPOP的缺失也会导致体重增加的缺陷。此外,条件性基因敲除小鼠对高脂饮食诱发的肥胖具有抵抗力。蛋白质组学分析发现,基因敲除小鼠体内上调的蛋白质主要富集于糖酵解/糖元生成、氧化磷酸化和产热功能中。此外,与野生型对照组相比,Spop基因敲除小鼠在耐寒试验中的恢复能力更强。最后,SPOP 基因敲除有效地阻碍了原代前脂肪细胞的脂肪生成和相关基因的表达。总之,这些发现证明了 SPOP 在调节小鼠脂肪生成和产热能力方面的关键作用。
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Spop deficiency impairs adipogenesis and promotes thermogenic capacity in mice.

As the adaptor protein that determines substrate specificity of the Cul3-SPOP-Rbx1 E3 ligase complex, SPOP is involved in numerous biological processes. However, its physiological connections with adipogenesis and thermogenesis remain poorly understood. In the current study, we report that the conditional knockout of Spop in mice results in substantial changes in protein expression, including the upregulation of a critical factor associated with thermogenesis, UCP1. Loss of SPOP also led to defects in body weight gain. In addition, conditional knockout mice exhibited resistance to high-fat-diet-induced obesity. Proteomics analysis found that proteins upregulated in the knockout mice are primarily enriched for functions in glycolysis/gluconeogenesis, oxidative phosphorylation, and thermogenesis. Furthermore, Spop knockout mice were more resilient during cold tolerance assay compared with the wild-type controls. Finally, the knockout of SPOP efficiently impaired adipogenesis in primary preadipocytes and the expression of associated genes. Collectively, these findings demonstrate the critical roles of SPOP in regulating adipogenesis and thermogenic capacity in mice.

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PLoS Genetics
PLoS Genetics GENETICS & HEREDITY-
自引率
2.20%
发文量
438
期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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