Identification of a novel phosphorylation site in adipose triglyceride lipase as a regulator of lipid droplet localization

脂肪甘油三酯脂肪酶 磷酸化 脂滴 脂解 脂肪酶 突变体 化学 调节器 突变 细胞生物学 生物化学 生物 脂肪组织 基因
作者
Xitao Xie,Paul R. Langlais,Xiaodong Zhang,Bradlee L. Heckmann,Alicia M. Saarinen,Lawrence J. Mandarino,Jun Liu
出处
期刊:American Journal of Physiology-endocrinology and Metabolism [American Physiological Society]
卷期号:306 (12): E1449-E1459 被引量:39
标识
DOI:10.1152/ajpendo.00663.2013
摘要

Adipose triglyceride lipase (ATGL), the rate-limiting enzyme for triacylglycerol (TG) hydrolysis, has long been known to be a phosphoprotein. However, the potential phosphorylation events that are involved in the regulation of ATGL function remain incompletely defined. Here, using a combinatorial proteomics approach, we obtained evidence that at least eight different sites of ATGL can be phosphorylated in adipocytes. Among them, Thr 372 resides within the hydrophobic region known to mediate lipid droplet (LD) targeting. Although it had no impact on the TG hydrolase activity, substitution of phosphorylation-mimic Asp for Thr 372 eliminated LD localization and LD-degrading capacity of ATGL expressed in HeLa cells. In contrast, mutation of Thr 372 to Ala gave a protein that bound LDs and functioned the same as the wild-type protein. In nonstimulated adipocytes, the Asp mutation led to decreased LD association and basal lipolytic activity of ATGL, whereas the Ala mutation produced opposite effects. Moreover, the LD translocation of ATGL upon β-adrenergic stimulation was also compromised by the Asp mutation. In accord with these findings, the Ala mutation promoted and the Asp mutation attenuated the capacity of ATGL to mediate lipolysis in adipocytes under both basal and stimulated conditions. Collectively, these studies identified Thr 372 as a novel phosphorylation site that may play a critical role in determining subcellular distribution as well as lipolytic action of ATGL.
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