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cAMP 信号通过靶向 RhoA-Rho 激酶-MLC 磷酸酶信号通路调节血小板肌球蛋白轻链(MLC)磷酸化和形态变化。

cAMP signaling regulates platelet myosin light chain (MLC) phosphorylation and shape change through targeting the RhoA-Rho kinase-MLC phosphatase signaling pathway.

机构信息

Centre for Cardiovascular and Metabolic Research, Hull York Medical School, University of Hull, Hull, United Kingdom.

出版信息

Blood. 2013 Nov 14;122(20):3533-45. doi: 10.1182/blood-2013-03-487850. Epub 2013 Oct 7.

Abstract

Cyclic adenosine monophosphate (cAMP)-dependent signaling modulates platelet shape change through unknown mechanisms. We examined the effects of cAMP signaling on platelet contractile machinery. Prostaglandin E1 (PGE1)-mediated inhibition of thrombin-stimulated shape change was accompanied by diminished phosphorylation of myosin light chain (MLC). Since thrombin stimulates phospho-MLC through RhoA/Rho-associated, coiled-coil containing protein kinase (ROCK)-dependent inhibition of MLC phosphatase (MLCP), we examined the effects of cAMP on this pathway. Thrombin stimulated the membrane localization of RhoA and the formation of a signaling complex of RhoA/ROCK2/myosin phosphatase-targeting subunit 1 (MYPT1). This resulted in ROCK-mediated phosphorylation of MYPT1 on threonine 853 (thr(853)), the disassociation of the catalytic subunit protein phosphatase 1δ (PP1δ) from MYPT1 and inhibition of basal MLCP activity. Treatment of platelets with PGE1 prevented thrombin-induced phospho-MYPT1-thr(853) in a protein kinase A (PKA)-dependent manner. Examination of the molecular mechanisms revealed that PGE1 induced the phosphorylation of RhoA on serine(188) through a pathway requiring cAMP and PKA. This event inhibited the membrane relocalization of RhoA, prevented the association of RhoA with ROCK2 and MYPT1, attenuated the dissociation of PP1δ from MYPT1, and thereby restored basal MLCP activity leading to a decrease in phospho-MLC. These data reveal a new mechanism by which the cAMP-PKA signaling pathway regulates platelet function.

摘要

环磷酸腺苷 (cAMP) 依赖性信号通过未知机制调节血小板形态变化。我们研究了 cAMP 信号对血小板收缩机制的影响。前列腺素 E1 (PGE1) 介导的抑制凝血酶刺激的形态变化伴随着肌球蛋白轻链 (MLC) 的磷酸化减少。由于凝血酶通过 RhoA/Rho 相关卷曲螺旋蛋白激酶 (ROCK) 依赖性抑制肌球蛋白轻链磷酸酶 (MLCP) 刺激磷酸化的 MLC,我们研究了 cAMP 对该途径的影响。凝血酶刺激 RhoA 的膜定位和 RhoA/ROCK2/肌球蛋白磷酸酶靶向亚单位 1 (MYPT1) 的信号复合物的形成。这导致 ROCK 介导的 MYPT1 的丝氨酸 853 (thr(853)) 磷酸化,催化亚基蛋白磷酸酶 1δ (PP1δ) 与 MYPT1 的解偶联以及基础 MLCP 活性的抑制。用 PGE1 处理血小板可通过蛋白激酶 A (PKA) 依赖性方式防止凝血酶诱导的 MYPT1-thr(853)磷酸化。对分子机制的研究表明,PGE1 通过依赖 cAMP 和 PKA 的途径诱导 RhoA 丝氨酸 188 (ser(188)) 的磷酸化。该事件抑制 RhoA 的膜重定位,防止 RhoA 与 ROCK2 和 MYPT1 的结合,减弱 PP1δ 与 MYPT1 的解离,并恢复基础 MLCP 活性,导致磷酸化 MLC 的减少。这些数据揭示了 cAMP-PKA 信号通路调节血小板功能的新机制。

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