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凝血酶刺激的血小板中LIM激酶1和丝切蛋白的调控

Regulation of LIM-kinase 1 and cofilin in thrombin-stimulated platelets.

作者信息

Pandey Dharmendra, Goyal Pankaj, Bamburg James R, Siess Wolfgang

机构信息

Institute for Prevention of Cardiovascular Diseases, University of Munich, Germany.

出版信息

Blood. 2006 Jan 15;107(2):575-83. doi: 10.1182/blood-2004-11-4377. Epub 2005 Oct 11.

Abstract

Cofilin is a regulator of actin filament dynamics. We studied whether during platelet activation Rho kinase stimulates LIM kinase (LIMK) leading to subsequent phosphorylation and inactivation of cofilin. Platelet shape change and aggregation/secretion were induced by low and high concentrations of thrombin, respectively. We found that during these platelet responses Rho kinase activation was responsible for mediating rapid Thr508 phosphorylation and activation of LIMK-1 and for the F-actin increase during shape change and, in part, during secretion. Surprisingly, during shape change cofilin phosphorylation was unaltered, and during aggregation/secretion cofilin was first rapidly dephosphorylated by an okadaic acid-insensitive phosphatase and then slowly rephosphorylated by LIMK-1. LIMK-1 phosphorylation and cofilin dephosphorylation and rephosphorylation during aggregation were independent of integrin alpha(IIb)beta(3) engagement. Cofilin phosphorylation did not regulate cofilin association with F-actin and was unrelated to the F-actin increase in thrombin-activated platelets. Our study identifies LIMK-1 as being activated by Rho kinase in thrombin-stimulated platelets. Two counteracting pathways, a cofilin phosphatase and LIMK-1, are activated during platelet aggregation/secretion regulating cofilin phosphorylation sequentially and independently of integrin alpha(IIb)beta(3) engagement. Rho kinase-mediated F-actin increase during platelet shape change and secretion involves a mechanism other than LIMK-1-mediated cofilin phosphorylation, raising the possibility of another LIMK substrate regulating platelet actin assembly.

摘要

丝切蛋白是肌动蛋白丝动力学的调节因子。我们研究了在血小板活化过程中,Rho激酶是否刺激LIM激酶(LIMK),从而导致丝切蛋白随后的磷酸化和失活。低浓度和高浓度凝血酶分别诱导血小板形状改变和聚集/分泌。我们发现,在这些血小板反应过程中,Rho激酶激活负责介导LIMK-1的快速苏氨酸508磷酸化和激活,以及在形状改变期间和部分分泌期间F-肌动蛋白的增加。令人惊讶的是,在形状改变期间丝切蛋白磷酸化未改变,而在聚集/分泌期间,丝切蛋白首先被冈田酸不敏感的磷酸酶快速去磷酸化,然后被LIMK-1缓慢重新磷酸化。聚集期间LIMK-1磷酸化、丝切蛋白去磷酸化和重新磷酸化与整合素α(IIb)β(3)的结合无关。丝切蛋白磷酸化不调节丝切蛋白与F-肌动蛋白的结合,且与凝血酶激活的血小板中F-肌动蛋白的增加无关。我们的研究确定LIMK-1在凝血酶刺激的血小板中被Rho激酶激活。在血小板聚集/分泌过程中,两条相互抵消的途径,即丝切蛋白磷酸酶和LIMK-1,被激活,依次调节丝切蛋白磷酸化,且与整合素α(IIb)β(3)的结合无关。血小板形状改变和分泌期间Rho激酶介导的F-肌动蛋白增加涉及一种不同于LIMK-1介导的丝切蛋白磷酸化的机制,这增加了另一种LIMK底物调节血小板肌动蛋白组装的可能性。

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