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首页> 外文期刊>American Journal of Physiology >Phosphorylated HSP20 modulates the association of thin-filament binding proteins: caldesmon with tropomyosin in colonic smooth muscle.
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Phosphorylated HSP20 modulates the association of thin-filament binding proteins: caldesmon with tropomyosin in colonic smooth muscle.

机译:磷酸化的HSP20调节结肠平滑肌中细丝结合蛋白(钙磷与原肌球蛋白)的结合。

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摘要

Small heat shock proteins HSP27 and HSP20 have been implicated in regulation of contraction and relaxation in smooth muscle. Activation of PKC-alpha promotes contraction by phosphorylation of HSP27 whereas activation of PKA promotes relaxation by phosphorylation of HSP20 in colonic smooth muscle cells (CSMC). We propose that the balance between the phosphorylation states of HSP27 and HSP20 represents a molecular signaling switch for contraction and relaxation. This molecular signaling switch acts downstream on a molecular mechanical switch [tropomyosin (TM)] regulating thin-filament dynamics. We have examined the role of phosphorylation state(s) of HSP20 on HSP27-mediated thin-filament regulation in CSMC. CSMC were transfected with different HSP20 phosphomutants. These transfections had no effect on the integrity of actin cytoskeleton. Cells transfected with 16D-HSP20 (phosphomimic) exhibited inhibition of acetylcholine (ACh)-induced contraction whereas cells transfected with 16A-HSP20 (nonphosphorylatable) had no effect on ACh-induced contraction. CSMC transfected with 16D-HSP20 cDNA showed significant decreases in 1) phosphorylation of HSP27 (ser78); 2) phosphorylation of PKC-alpha (ser657); 3) phosphorylation of TM and CaD (ser789); 4) ACh-induced phosphorylation of myosin light chain; 5) ACh-induced association of TM with HSP27; and 6) ACh-induced dissociation of TM from caldesmon (CaD). We thus propose the crucial physiological relevance of molecular signaling switch (phosphorylation state of HSP27 and HSP20), which dictates 1) the phosphorylation states of TM and CaD and 2) their dissociations from each other.
机译:小型热激蛋白HSP27和HSP20与平滑肌的收缩和松弛调节有关。 PKC-α的激活通过HSP27的磷酸化促进收缩,而PKA的激活通过HSP20的磷酸化在结肠平滑肌细胞(CSMC)中促进松弛。我们建议HSP27和HSP20的磷酸化状态之间的平衡代表收缩和放松的分子信号转导。该分子信号转导在下游作用于调节细丝动力学的分子机械转导[tropomyosin(TM)]。我们已经检查了HSP20的磷酸化状态对CSMC中HSP27介导的细丝调节的作用。将CSMC用不同的HSP20磷酸突变体转染。这些转染对肌动蛋白细胞骨架的完整性没有影响。转染了16D-HSP20(磷酸)的细胞表现出对乙酰胆碱(ACh)诱导的收缩的抑制作用,而转染了16A-HSP20(不可磷酸化)的细胞对ACh诱导的收缩没有影响。用16D-HSP20 cDNA转染的CSMC在1)HSP27(ser78)的磷酸化中显示出明显的降低; 2)PKC-α(ser657)的磷酸化; 3)TM和CaD的磷酸化(ser789); 4)ACh诱导的肌球蛋白轻链的磷酸化; 5)ACh诱导的TM与HSP27的缔合; 6)ACh诱导的TM与Caldesmon(CaD)的解离。因此,我们提出了分子信号转导的关键生理相关性(HSP27和HSP20的磷酸化状态),这决定了1)TM和CaD的磷酸化状态,以及2)它们彼此的解离。

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