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perilipin-5 (Plin5) 与脂肪甘油三酯脂肪酶的相互作用。

Interactions of perilipin-5 (Plin5) with adipose triglyceride lipase.

机构信息

Center for Integrative Metabolic and Endocrine Research, Wayne State University School of Medicine, Detroit, Michigan 48201, USA.

出版信息

J Biol Chem. 2011 Feb 18;286(7):5126-35. doi: 10.1074/jbc.M110.180711. Epub 2010 Dec 8.

Abstract

Members of the perilipin family of lipid droplet scaffold proteins are thought to play important roles in tissue-specific regulation of triglyceride metabolism, but the mechanisms involved are not fully understood. Present results indicate that adipose triglyceride lipase (Atgl) interacts with perilipin-5 (Plin5) but not perilipin-1 (Plin1). Protein interaction assays in live cells and in situ binding experiments showed that Atgl and its protein activator, α-β-hydrolase domain-containing 5 (Abhd5), each bind Plin5. Surprisingly, competition experiments indicated that individual Plin5 molecules bind Atgl or Abhd5 but not both simultaneously. Thus, the ability of Plin5 to concentrate these proteins at droplet surfaces involves binding to different Plin5 molecules, possibly in an oligomeric complex. The association of Plin5-Abhd5 complexes on lipid droplet surfaces was more stable than Plin5-Atgl complexes, and oleic acid treatment selectively promoted the interaction of Plin5 and Abhd5. Analysis of chimeric and mutant perilipin proteins demonstrated that amino acids 200-463 are necessary and sufficient to bind both Atgl and Abhd5 and that the C-terminal 64 amino acids of Plin5 are critical for the differential binding of Atgl to Plin5 and Plin1. Mutant Plin5 that binds Abhd5 but not Atgl was defective in preventing neutral lipid accumulation compared with wild type Plin5, indicating that the ability of Plin5 to concentrate these proteins on lipid droplets is critical to functional Atgl activity in cells.

摘要

脂质滴支架蛋白 perilipin 家族的成员被认为在组织特异性的甘油三酯代谢调节中发挥重要作用,但涉及的机制尚未完全了解。目前的结果表明,脂肪甘油三酯脂肪酶(Atgl)与 perilipin-5(Plin5)相互作用,但不与 perilipin-1(Plin1)相互作用。活细胞中的蛋白相互作用测定和原位结合实验表明,Atgl 及其蛋白激活剂 α-β-水解酶结构域包含蛋白 5(Abhd5),各自与 Plin5 结合。令人惊讶的是,竞争实验表明,单个 Plin5 分子与 Atgl 或 Abhd5 结合,但不能同时与两者结合。因此,Plin5 将这些蛋白浓缩在滴表面的能力涉及与不同的 Plin5 分子结合,可能在一个寡聚复合物中。Plin5-Abhd5 复合物在脂滴表面的结合比 Plin5-Atgl 复合物更稳定,油酸处理选择性地促进了 Plin5 和 Abhd5 的相互作用。嵌合和突变 perilipin 蛋白的分析表明,氨基酸 200-463 是结合 Atgl 和 Abhd5 所必需和充分的,Plin5 的 C 末端 64 个氨基酸对于 Atgl 与 Plin5 和 Plin1 的差异结合至关重要。与野生型 Plin5 相比,与 Abhd5 结合但不与 Atgl 结合的突变 Plin5 在防止中性脂质积累方面存在缺陷,表明 Plin5 将这些蛋白浓缩在脂滴上的能力对于细胞中 Atgl 活性的功能性至关重要。

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