Granneman James G, Moore Hsiao-Ping H, Mottillo Emilio P, Zhu Zhengxian
Center for Integrative Metabolic and Endocrine Research, the Department of Psychiatry and Behavioral Neurosciences, Wayne State University School of Medicine, Detroit, Michigan 48201.
Center for Integrative Metabolic and Endocrine Research, the Department of Psychiatry and Behavioral Neurosciences, Wayne State University School of Medicine, Detroit, Michigan 48201.
J Biol Chem. 2009 Jan 30;284(5):3049-3057. doi: 10.1074/jbc.M808251200. Epub 2008 Dec 8.
Cellular lipid metabolism is regulated in part by protein-protein interactions near the surface of intracellular lipid droplets. This work investigated functional interactions between Abhd5, a protein activator of the lipase Atgl, and Mldp, a lipid droplet scaffold protein that is highly expressed in oxidative tissues. Abhd5 was highly targeted to individual lipid droplets containing Mldp in microdissected cardiac muscle fibers. Mldp bound Abhd5 in transfected fibroblasts and directed it to lipid droplets in proportion to Mldp concentration. Analysis of protein-protein interactions in situ demonstrated that the interaction of Abhd5 and Mldp occurs mainly, if not exclusively, on the surface of lipid droplets. Oleic acid treatment rapidly increased the interaction between Abhd5 and Mldp, and this effect was suppressed by pharmacological inhibition of triglyceride synthesis. The functional role of the Abhd5-Mldp interaction was explored using a mutant of mouse Abhd5 (E262K) that has greatly reduced binding to Mldp. Mldp promoted the subcellular colocalization and interaction of Atgl with wild type, but not mutant, Abhd5. This differential interaction was reflected in cellular assays of Atgl activity. In the absence of Mldp, wild type and mutant Abhd5 were equally effective in reducing lipid droplet formation. In contrast, mutant Abhd5 was unable to prevent lipid droplet accumulation in cells expressing Mldp despite considerable targeting of Atgl to lipid droplets containing Mldp. These results indicate that the interaction between Abhd5 and Mldp is dynamic and essential for regulating the activity of Atgl at lipid droplets containing Mldp.
细胞脂质代谢部分受细胞内脂质滴表面附近蛋白质 - 蛋白质相互作用的调节。这项研究调查了脂肪酶Atgl的蛋白质激活剂Abhd5与在氧化组织中高表达的脂质滴支架蛋白Mldp之间的功能相互作用。在显微切割的心肌纤维中,Abhd5高度靶向含有Mldp的单个脂质滴。Mldp在转染的成纤维细胞中与Abhd5结合,并将其导向脂质滴,其比例与Mldp浓度成正比。原位蛋白质 - 蛋白质相互作用分析表明,Abhd5和Mldp的相互作用主要(如果不是唯一的话)发生在脂质滴表面。油酸处理迅速增加了Abhd5和Mldp之间的相互作用,并且这种作用被甘油三酯合成的药理学抑制所抑制。使用与Mldp结合大大减少的小鼠Abhd5突变体(E262K)探索了Abhd5 - Mldp相互作用的功能作用。Mldp促进了Atgl与野生型而非突变型Abhd5的亚细胞共定位和相互作用。这种差异相互作用反映在Atgl活性的细胞测定中。在没有Mldp的情况下,野生型和突变型Abhd5在减少脂质滴形成方面同样有效。相比之下,尽管Atgl大量靶向含有Mldp的脂质滴,但突变型Abhd5无法阻止表达Mldp的细胞中脂质滴的积累。这些结果表明,Abhd5和Mldp之间的相互作用是动态的,对于调节Atgl在含有Mldp的脂质滴上的活性至关重要。