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Regulation of G0/G1 Switch Gene 2 (G0S2) Protein Ubiquitination and Stability by Triglyceride Accumulation and ATGL Interaction

机译:甘油三酸酯积累和ATGL相互作用调节G0 / G1开关基因2(G0S2)蛋白泛素化和稳定性。

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摘要

Intracellular triglyceride (TG) hydrolysis or lipolysis is catalyzed by the key intracellular triglyceride hydrolase, adipose triglyceride lipase (ATGL). The G0/G1 Switch Gene 2 (G0S2) was recently identified as the major selective inhibitor of ATGL and its hydrolase function. Since G0S2 levels are dynamically linked and rapidly responsive to nutrient status or metabolic requirements, the identification of its regulation at the protein level is of significant value. Earlier evidence from our laboratory demonstrated that G0S2 is a short-lived protein degraded through the proteasomal pathway. However, little is currently known regarding the underlying mechanisms. In the current study we find that 1) protein degradation is initiated by K48-linked polyubiquitination of the lysine- 25 in G0S2; and 2) G0S2 protein is stabilized in response to ATGL expression and TG accumulation. Mutation of lysine-25 of G0S2 abolished ubiquitination and increased protein stability. More importantly, G0S2 was stabilized via different mechanisms in the presence of ATGL vs. in response to fatty acid (FA)-induced TG accumulation. Furthermore, G0S2 protein but not mRNA levels were reduced in the adipose tissue of ATGL-deficient mice, corroborating the involvement of ATGL in the stabilization of G0S2. Taken together our data illustrate for the first time a crucial multifaceted mechanism for the stabilization of G0S2 at the protein level.
机译:关键的细胞内甘油三酸酯水解酶,脂肪甘油三酸酯脂酶(ATGL)催化细胞内甘油三酸酯(TG)水解或脂解。最近发现,G0 / G1开关基因2(G0S2)是ATGL及其水解酶功​​能的主要选择性抑制剂。由于G0S2水平是动态关联的,并且对营养状况或代谢要求快速响应,因此在蛋白质水平上对其调节的鉴定具有重要价值。我们实验室的早期证据表明,G0S2是一种通过蛋白酶体途径降解的短寿命蛋白质。但是,目前对于底层机制知之甚少。在当前的研究中,我们发现:1)蛋白降解是由G0S2中的赖氨酸25的K48连接多聚泛素化引起的; 2)G0S2蛋白响应ATGL表达和TG积累而稳定。 G0S2赖氨酸25的突变消除了泛素化并增加了蛋白质的稳定性。更重要的是,在存在ATGL的情况下,通过响应脂肪酸(FA)诱导的TG积累,GOS2通过不同的机制得以稳定。此外,ATGL缺陷小鼠的脂肪组织中的G0S2蛋白降低了mRNA水平,但没有降低,这证实了ATGL参与了G0S2的稳定化。综上所述,我们的数据首次说明了在蛋白质水平上稳定G0S2的至关重要的多方面机制。

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