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在COS细胞中表达的兔骨骼肌糖原合酶。调节性磷酸化位点的鉴定。

Rabbit skeletal muscle glycogen synthase expressed in COS cells. Identification of regulatory phosphorylation sites.

作者信息

Skurat A V, Wang Y, Roach P J

机构信息

Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis 46202-5122.

出版信息

J Biol Chem. 1994 Oct 14;269(41):25534-42.

PMID:7929255
Abstract

Rabbit skeletal muscle glycogen synthase contains multiple sites for phosphorylation. To investigate the relative importance of these sites, the enzyme was overexpressed in COS M9 cells, and Ser-->Ala mutations were introduced singly, or in combinations, at nine known phosphorylation sites. Overexpressed wild-type enzyme had a very low +/- glucose-6-P activity ratio of approximately 0.01, indicative that the glycogen synthase is in a highly phosphorylated state. No single Ser-->Ala mutation was able to cause a substantial increase in activity ratio; rather, simultaneous mutation at both NH2- and COOH-terminal sites was needed. The most effective combinations were mutations at site 3a (Ser-640) or site 3b (Ser-644) together with site 2 (Ser-7). The results were consistent with site 2 phosphorylation being a prerequisite for phosphorylation of site 2a (Ser-10). Mutation of site 5 (Ser-656) perturbed COOH-terminal phosphorylation but did not prevent inactivation. Expression of the most active mutants correlated with increased glycogen accumulation in the COS M9 cells. In summary, we conclude that (i) the sites most important for activating the enzyme are sites 2, 2a, 3a, and 3b; (ii) removal of phosphate from both NH2- and COOH-terminal sites is required for activation; and (iii) sites 3a and/or 3b can be phosphorylated in COS cells by mechanisms that do not depend on phosphorylation of site 5.

摘要

兔骨骼肌糖原合酶含有多个磷酸化位点。为了研究这些位点的相对重要性,该酶在COS M9细胞中过表达,并在九个已知的磷酸化位点单独或组合引入Ser→Ala突变。过表达的野生型酶具有非常低的+/-葡萄糖-6-磷酸活性比,约为0.01,表明糖原合酶处于高度磷酸化状态。没有单个Ser→Ala突变能够使活性比大幅增加;相反,需要在NH2-和COOH-末端位点同时进行突变。最有效的组合是3a位点(Ser-640)或3b位点(Ser-644)与2位点(Ser-7)一起突变。结果与2位点磷酸化是2a位点(Ser-10)磷酸化的先决条件一致。5位点(Ser-656)的突变扰乱了COOH-末端的磷酸化,但并未阻止失活。活性最高的突变体的表达与COS M9细胞中糖原积累的增加相关。总之,我们得出以下结论:(i)对激活该酶最重要的位点是2、2a、3a和3b位点;(ii)激活需要从NH2-和COOH-末端位点去除磷酸;(iii)3a和/或3b位点在COS细胞中可通过不依赖于5位点磷酸化的机制进行磷酸化。

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