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生成一种针对蛋白磷酸酶-1 的糖原靶向亚基的显性负性突变体。

Generation of a dominant-negative glycogen targeting subunit for protein phosphatase-1.

机构信息

Department of Medicine, Section of Endocrinology, Diabetes, and Metabolism and the Committee on Molecular Metabolism and Nutrition, The University of Chicago, Chicago, Illinois, USA.

出版信息

Obesity (Silver Spring). 2010 Oct;18(10):1881-7. doi: 10.1038/oby.2010.32. Epub 2010 Mar 4.

DOI:10.1038/oby.2010.32
PMID:20203631
Abstract

Modulation of the expression of the protein phosphatase-1 (PP1) glycogen-targeting subunit PTG exerts profound effects on cellular glycogen metabolism in vitro and in vivo. PTG contains three distinct binding domains for glycogen, PP1, and a common site for glycogen synthase and phosphorylase. The impact of disrupting the PP1-binding domain on PTG function was examined in 3T3-L1 adipocytes. A full-length PTG mutant was generated as an adenoviral construct in which the valine and phenylalanine residues in the conserved PP1-binding domain were mutated to alanine (PTG-VF). Infection of fully differentiated 3T3-L1 adipocytes with the PTG-VF adenovirus reduced glycogen stores by over 50%. In vitro, PTG-VF competitively interfered with wild-type PTG action, suggesting that the mutant construct acted as a dominant-negative molecule. The reduction in cellular glycogen storage was due to a significantly increased rate of glycogen turnover. Interestingly, acute basal and insulin-stimulated glucose uptake and glycogen synthesis rates were enhanced in PTG-VF expressing cells vs. control 3T3-L1 adipocytes, likely as a compensatory response to the loss of glycogen stores. These results indicate that the mutation of the PP1-binding domain on PTG resulted in the generation of a dominant-negative molecule that impeded endogenous PTG action and reduced cellular glycogen levels, through enhancement of glycogenolysis rather than impairment of glycogen synthesis.

摘要

蛋白磷酸酶-1(PP1)糖原靶向亚基 PTG 的表达调控对细胞内糖原代谢具有深远影响,无论是在体外还是体内。PTG 包含三个独特的糖原结合域、PP1 结合域和一个共同的糖原合酶和磷酸化酶结合位点。为了研究破坏 PP1 结合域对 PTG 功能的影响,在 3T3-L1 脂肪细胞中进行了实验。构建了一个全长的 PTG 突变体作为腺病毒载体,其中保守的 PP1 结合域中的缬氨酸和苯丙氨酸残基突变为丙氨酸(PTG-VF)。用 PTG-VF 腺病毒感染完全分化的 3T3-L1 脂肪细胞,导致糖原储存减少超过 50%。在体外,PTG-VF 竞争性地干扰野生型 PTG 的作用,表明突变体构建物作为一种显性负性分子起作用。细胞内糖原储存的减少是由于糖原周转率显著增加所致。有趣的是,与对照 3T3-L1 脂肪细胞相比,表达 PTG-VF 的细胞中急性基础和胰岛素刺激的葡萄糖摄取和糖原合成率增加,这可能是由于糖原储存丧失而导致的代偿性反应。这些结果表明,PTG 的 PP1 结合域的突变导致产生了一种显性负性分子,通过增强糖原分解而不是损害糖原合成,从而阻碍内源性 PTG 的作用并降低细胞内糖原水平。

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Glycogen Repletion in Brown Adipose Tissue upon Refeeding Is Primarily Driven by Phosphorylation-Independent Mechanisms.再喂养时棕色脂肪组织中的糖原补充主要由非磷酸化机制驱动。
PLoS One. 2016 May 23;11(5):e0156148. doi: 10.1371/journal.pone.0156148. eCollection 2016.