首页> 外文期刊>American Journal of Physiology >Phosphorylated HSP27 modulates the association of phosphorylated caldesmon with tropomyosin in colonic smooth muscle.
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Phosphorylated HSP27 modulates the association of phosphorylated caldesmon with tropomyosin in colonic smooth muscle.

机译:磷酸化的HSP27调节结肠平滑肌中磷酸化的caldesmon与原肌球蛋白的缔合。

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摘要

Thin-filament regulation of smooth muscle contraction involves phosphorylation, association, and dissociation of contractile proteins in response to agonist stimulation. Phosphorylation of caldesmon weakens its association with actin leading to actomyosin interaction and contraction. Present data from colonic smooth muscle cells indicate that acetylcholine induced a significant association of caldesmon with PKCalpha and sustained phosphorylation of caldesmon at ser789. Furthermore, acetylcholine induced significant and sustained increase in the association of phospho-caldesmon with heat-shock protein (HSP)27 with concomitant increase in the dissociation of phospho-caldesmon from tropomyosin. At the thin filament level, HSP27 plays a crucial role in acetylcholine-induced association of contractile proteins. Present data from colonic smooth muscle cells transfected with non-phospho-HSP27 mutant cDNA indicate that the absence of phospho-HSP27 inhibits acetylcholine-induced caldesmon phosphorylation. Our results further indicate that the presence of phospho-HSP27 significantly enhances acetylcholine-induced sustained association of phospho-caldesmon with HSP27 with a concomitant increase in acetylcholine-induced dissociation of phospho-caldesmon from tropomyosin. We thus propose a model whereby upon acetylcholine-induced phosphorylation of caldesmon at ser789, the association of phospho-caldesmon (ser789) with phospho-HSP27 results in an essential conformational change leading to dissociation of phospho-caldesmon from tropomyosin. This leads to the sliding of tropomyosin on actin thus exposing the myosin binding sites on actin for actomyosin interaction.
机译:平滑肌收缩的细丝调节涉及响应激动剂刺激的收缩蛋白的磷酸化,缔合和解离。 Caldesmon的磷酸化减弱了其与肌动蛋白的结合,导致肌动球蛋白相互作用和收缩。来自结肠平滑肌细胞的当前数据表明,乙酰胆碱诱导了卡尔德斯蒙与PKCα的显着缔合以及卡尔德斯蒙在ser789的持续磷酸化。此外,乙酰胆碱诱导磷酸-卡尔德斯蒙与热激蛋白(HSP)27的结合显着且持续增加,同时磷酸钙-卡尔德蒙与原肌球蛋白的解离也随之增加。在细丝水平,​​HSP27在乙酰胆碱诱导的收缩蛋白缔合中起关键作用。从非磷酸化HSP27突变cDNA转染的结肠平滑肌细胞获得的最新数据表明,磷酸化HSP27的缺乏抑制了乙酰胆碱诱导的卡尔德斯蒙磷酸化。我们的结果进一步表明,磷酸化-HSP27的存在显着增强了乙酰胆碱诱导的磷酸-金盏花与HSP27的持续缔合,同时乙酰胆碱诱导的磷酸-钙化石与原肌球蛋白的解离也随之增加。因此,我们提出了一种模型,该模型基于乙酰胆碱在ser789上引起Caldesmon磷酸化时,磷酸Caldesmon(ser789)与磷酸HSP27的缔合导致本质构象变化,导致磷酸Caldesmon从原肌球蛋白解离。这导致原肌球蛋白在肌动蛋白上滑动,从而使肌动蛋白上的肌球蛋白结合位点暴露于肌动蛋白相互作用。

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