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WEE1的抑制和细胞周期蛋白依赖性激酶25A(CDC25A)的激活与大鼠主动脉平滑肌细胞中内皮素依赖性增殖相关。

Suppression of WEE1 and stimulation of CDC25A correlates with endothelin-dependent proliferation of rat aortic smooth muscle cells.

作者信息

Chen Songcang, Gardner David G

机构信息

Department of Medicine, University of California at San Francisco, San Francisco, California 94143-0540, USA.

出版信息

J Biol Chem. 2004 Apr 2;279(14):13755-63. doi: 10.1074/jbc.M310064200. Epub 2004 Jan 23.

Abstract

Proliferation of vascular smooth muscle cells plays a key role in the pathogenesis of several disorders of the vascular wall. Endothelin (ET), a vasoactive peptide that signals through a G protein-coupled receptor, has been linked to mitogenesis in vascular smooth muscle cells, but the mechanistic details underlying this activity remain incompletely understood. In the present study, we demonstrate that ET-dependent mitogenesis in rat neonatal and adult aortic smooth muscle (RASM) cells is accompanied by an increase (up to 10-fold) in CDK2 activity, but not CDK2 protein levels. This effect is blocked almost entirely by PD98059 and UO126, implying involvement of the MEK/ERK signal transduction cascade in the activation. Extracts of ET-treated cells phosphorylate the N terminus of WEE1, an inhibitory kinase, which negatively regulates CDK2 activity through phosphorylation at Tyr(15), leading to a decrease in WEE1 activity and a reduction in levels of phospho-Tyr(15) in the CDK2 protein. ET also increases expression and activity of CDC25A, the regulatory phosphatase responsible for dephosphorylating Tyr(15). All of these effects are reversible following treatment with the MEK inhibitor PD98059. ET also increases levels of CDC2 activity in these cells in association with a decrease in levels of phospho-Tyr(15) on the CDC2 molecule. Phosphorylation of WEE1 is linked to ERK while phosphorylation of MYT1 (CDC2-selective inhibitory kinase) is tied to the ribosomal S6 kinase (RSK). In summary, ET controls progression through the cell cycle, in part, by increasing CDK2 and CDC2 activity through the MEK/ERK/RSK signal transduction pathway(s). This results from the phosphorylation and subsequent inactivation of two inhibitory kinases (WEE1 and MYT1) that tonically suppress CDK2 and CDC2 activity and activation of a phosphatase (CDC25A) that increases CDK2 activity.

摘要

血管平滑肌细胞的增殖在几种血管壁疾病的发病机制中起关键作用。内皮素(ET)是一种通过G蛋白偶联受体发出信号的血管活性肽,它与血管平滑肌细胞的有丝分裂有关,但其背后的机制细节仍未完全清楚。在本研究中,我们证明大鼠新生和成年主动脉平滑肌(RASM)细胞中ET依赖性有丝分裂伴随着CDK2活性增加(高达10倍),但CDK2蛋白水平并未增加。这种效应几乎完全被PD98059和UO126阻断,这意味着MEK/ERK信号转导级联参与了激活过程。经ET处理的细胞提取物可使抑制性激酶WEE1的N末端磷酸化,WEE1通过在Tyr(15)位点磷酸化负向调节CDK2活性,导致WEE1活性降低以及CDK2蛋白中磷酸化Tyr(15)水平降低。ET还增加了CDC25A的表达和活性,CDC25A是负责使Tyr(15)去磷酸化的调节性磷酸酶。在用MEK抑制剂PD98059处理后,所有这些效应都是可逆的。ET还增加了这些细胞中CDC2的活性,同时CDC2分子上磷酸化Tyr(15)的水平降低。WEE1的磷酸化与ERK相关,而MYT1(CDC2选择性抑制激酶)的磷酸化与核糖体S6激酶(RSK)相关。总之,ET部分通过MEK/ERK/RSK信号转导途径增加CDK2和CDC2活性来控制细胞周期进程。这是由于两种抑制性激酶(WEE1和MYT1)磷酸化并随后失活,它们持续抑制CDK2和CDC2活性,以及一种磷酸酶(CDC25A)激活,增加了CDK2活性。

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