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细胞外信号对微管动力学的调节:环磷酸腺苷依赖性蛋白激酶在完整细胞中关闭癌蛋白18的活性。

Regulation of microtubule dynamics by extracellular signals: cAMP-dependent protein kinase switches off the activity of oncoprotein 18 in intact cells.

作者信息

Gradin H M, Larsson N, Marklund U, Gullberg M

机构信息

The Department for Cell and Molecular Biology, University of Umeâ, S-901 87 Sweden.

出版信息

J Cell Biol. 1998 Jan 12;140(1):131-41. doi: 10.1083/jcb.140.1.131.

Abstract

Oncoprotein 18 (Op18, also termed p19, 19K, metablastin, stathmin, and prosolin) is a recently identified regulator of microtubule (MT) dynamics. Op18 is a target for both cell cycle and cell surface receptor-coupled kinase systems, and phosphorylation of Op18 on specific combinations of sites has been shown to switch off its MT-destabilizing activity. Here we show that induced expression of the catalytic subunit of cAMP-dependent protein kinase (PKA) results in a dramatic increase in cellular MT polymer content concomitant with phosphorylation and partial degradation of Op18. That PKA may regulate the MT system by downregulation of Op18 activity was evaluated by a genetic system allowing conditional co-expression of PKA and a series of kinase target site-deficient mutants of Op18. The results show that phosphorylation of Op18 on two specific sites, Ser-16 and Ser-63, is necessary and sufficient for PKA to switch off Op18 activity in intact cells. The regulatory importance of dual phosphorylation on Ser-16 and Ser-63 of Op18 was reproduced by in vitro assays. These results suggest a simple model where PKA phosphorylation downregulates the MT-destabilizing activity of Op18, which in turn promotes increased tubulin polymerization. Hence, the present study shows that Op18 has the potential to regulate the MT system in response to external signals such as cAMP-linked agonists.

摘要

癌蛋白18(Op18,也称为p19、19K、变构菌素、微管蛋白结合蛋白1和前索蛋白)是最近发现的微管(MT)动力学调节因子。Op18是细胞周期和细胞表面受体偶联激酶系统的作用靶点,已表明Op18在特定位点组合上的磷酸化会使其MT解聚活性丧失。在此我们表明,cAMP依赖性蛋白激酶(PKA)催化亚基的诱导表达会导致细胞MT聚合物含量显著增加,同时伴有Op18的磷酸化和部分降解。通过一个允许PKA与一系列Op18激酶靶点位点缺陷突变体进行条件共表达的遗传系统,评估了PKA是否可能通过下调Op18活性来调节MT系统。结果表明,Op18在两个特定位点Ser-16和Ser-63上的磷酸化对于PKA在完整细胞中关闭Op18活性是必要且充分的。体外试验重现了Op18的Ser-16和Ser-63双重磷酸化的调节重要性。这些结果提示了一个简单的模型,即PKA磷酸化下调Op18的MT解聚活性,进而促进微管蛋白聚合增加。因此,本研究表明Op18具有响应诸如cAMP连接激动剂等外部信号调节MT系统的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6013/2132587/5a907b692082/JCB32945.f1.jpg

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