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首页> 外文期刊>PLoS One >Rho-associated kinase and zipper-interacting protein kinase, but not myosin light chain kinase, are involved in the regulation of myosin phosphorylation in serum-stimulated human arterial smooth muscle cells
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Rho-associated kinase and zipper-interacting protein kinase, but not myosin light chain kinase, are involved in the regulation of myosin phosphorylation in serum-stimulated human arterial smooth muscle cells

机译:RHO相关的激酶和拉链相互作用蛋白激酶,但不是肌霉素轻链激酶,参与调节血清刺激的人类动脉平滑肌细胞中的肌蛋白磷酸化

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Myosin regulatory light chain (LC 20 ) phosphorylation plays an important role in vascular smooth muscle contraction and cell migration. Ca 2+ /calmodulin-dependent myosin light chain kinase (MLCK) phosphorylates LC 20 (its only known substrate) exclusively at S19. Rho-associated kinase (ROCK) and zipper-interacting protein kinase (ZIPK) have been implicated in the regulation of LC 20 phosphorylation via direct phosphorylation of LC 20 at T18 and S19 and indirectly via phosphorylation of MYPT1 (the myosin targeting subunit of myosin light chain phosphatase, MLCP) and Par-4 (prostate-apoptosis response-4). Phosphorylation of MYPT1 at T696 and T853 inhibits MLCP activity whereas phosphorylation of Par-4 at T163 disrupts its interaction with MYPT1, exposing the sites of phosphorylation in MYPT1 and leading to MLCP inhibition. To evaluate the roles of MLCK, ROCK and ZIPK in these phosphorylation events, we investigated the time courses of phosphorylation of LC 20 , MYPT1 and Par-4 in serum-stimulated human vascular smooth muscle cells (from coronary and umbilical arteries), and examined the effects of siRNA-mediated MLCK, ROCK and ZIPK knockdown and pharmacological inhibition on these phosphorylation events. Serum stimulation induced rapid phosphorylation of LC 20 at T18 and S19, MYPT1 at T696 and T853, and Par-4 at T163, peaking within 30–120 s. MLCK knockdown or inhibition, or Ca 2+ chelation with EGTA, had no effect on serum-induced LC 20 phosphorylation. ROCK knockdown decreased the levels of phosphorylation of LC 20 at T18 and S19, of MYPT1 at T696 and T853, and of Par-4 at T163, whereas ZIPK knockdown decreased LC 20 diphosphorylation, but increased phosphorylation of MYPT1 at T696 and T853 and of Par-4 at T163. ROCK inhibition with GSK429286A reduced serum-induced phosphorylation of LC 20 at T18 and S19, MYPT1 at T853 and Par-4 at T163, while ZIPK inhibition by HS38 reduced only LC 20 diphosphorylation. We also demonstrated that serum stimulation induced phosphorylation (activation) of ZIPK, which was inhibited by ROCK and ZIPK down-regulation and inhibition. Finally, basal phosphorylation of LC 20 in the absence of serum stimulation was unaffected by MLCK, ROCK or ZIPK knockdown or inhibition. We conclude that: (i) serum stimulation of cultured human arterial smooth muscle cells results in rapid phosphorylation of LC 20 , MYPT1, Par-4 and ZIPK, in contrast to the slower phosphorylation of kinases and other proteins involved in other signaling pathways (Akt, ERK1/2, p38 MAPK and HSP27), (ii) ROCK and ZIPK, but not MLCK, are involved in serum-induced phosphorylation of LC 20 , (iii) ROCK, but not ZIPK, directly phosphorylates MYPT1 at T853 and Par-4 at T163 in response to serum stimulation, (iv) ZIPK phosphorylation is enhanced by serum stimulation and involves phosphorylation by ROCK and autophosphorylation, and (v) basal phosphorylation of LC 20 under serum-free conditions is not attributable to MLCK, ROCK or ZIPK.
机译:肌球蛋白调节轻链(LC 20)磷酸化在血管平滑肌肉收缩和细胞迁移中起着重要作用。 Ca 2+ /钙调蛋白依赖性肌球蛋白轻链激酶(mLCK)仅在S19处仅磷酸化LC 20(其唯一已知的底物)。 RHO相关激酶(岩)和拉链 - 相互作用蛋白激酶(ZIPK)通过在T18和S19的直接磷酸化并通过磷酸化的直接磷酸化并通过Mypt1(肌蛋白肌瘤的亚胞蛋白亚氏菌亚氏菌丝的肌蛋白的磷酸化调节链磷酸酶,MLCP)和PAR-4(前列腺 - 凋亡反应-4)。 Mypt1在T696和T853的磷酸化抑制MLCP活性,而T163的PAR-4的磷酸化破坏其与MyPT1的相互作用,将磷酸化位点暴露于Mypt1中并导致MLCP抑制。为了评估MLCK,ROCK和ZIPK在这些磷酸化事件中的作用,我们研究了血清刺激的人血管平滑肌细胞中LC 20,MYPT1和PAR-4的磷酸化的时间疗法(来自冠状动脉和脐带动脉),并检查SiRNA介导的MLCK,岩石和ZIPK敲低的影响和药理抑制对这些磷酸化事件的影响。血清刺激在T18和S19,T696和T853处的T18和S19,MyPT1的快速磷酸化,T163在T163的PAR-4,在30-120秒内达到峰值。 MLCK敲低或抑制或与EGTA的Ca 2+螯合对血清诱导的LC 20磷酸化没有影响。岩石敲低在T1196和T853的T18和S19处的LC 20的磷酸化水平降低,T163的PAR-4,而Zipk敲低降低LC 20二磷酸化,但在T696和T853和T853和PAR中增加了Mypt1的磷酸化。 -4在T163。用GSK429286A在T18和S19,T1153处的MyPT1和T163的PAR-4降低血清诱导的LC 20的磷酸化,而HS38的ZiPK抑制仅减少LC 20二磷酸化。我们还表明,血清刺激诱导Zipk的磷酸化(活化),其被岩石和Zipk降调和抑制抑制。最后,在没有血清刺激的情况下,LC 20的基础磷酸化不受MLCK,岩石或ZIPK敲低或抑制的影响。我们得出:(i)血清刺激培养的人类动脉平滑肌细胞导致LC 20,MyPT1,PAR-4和Zipk的快速磷酸化,与激酶的较慢磷酸化和其他信号传导途径的其他蛋白质相比(akt ,ERK1 / 2,P38 MAPK和HSP27),(ii)岩石和ZIPK,但不是MLCK,涉及LC 20,(III)岩石,但不是ZIPK的血清诱导的磷酸化,直接磷酸化Mypt1在T853和PAR-在T163时,响应于血清刺激,(IV)通过血清刺激增强(IV)ZiPK磷酸化,涉及通过岩石和自磷酸化的磷酸化,并且在无血清条件下LC 20的基础磷酸化不归因于MLCK,岩石或ZIPK 。

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