首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >The small heat shock-related protein HSP20 is a cAMP-dependent protein kinase substrate that is involved in airway smooth muscle relaxation
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The small heat shock-related protein HSP20 is a cAMP-dependent protein kinase substrate that is involved in airway smooth muscle relaxation

机译:小型热休克相关蛋白HSP20是一种cAMP依赖性蛋白激酶底物参与气道平滑肌松弛

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摘要

Activation of the cAMP/cAMP-dependent PKA pathway leads to relaxation of airway smooth muscle (ASM). The purpose of this study was to examine the role of the small heat shock-related protein HSP20 in mediating PKA-dependent ASM relaxation. Human ASM cells were engineered to constitutively express a green fluorescent protein-PKA inhibitory fusion protein (PKI-GFP) or GFP alone. Activation of the cAMP-dependent signaling pathways by isoproterenol (ISO) or forskolin led to increases in the phosphorylation of HSP20 in GFP but not PKI-GFP cells. Forskolin treatment in GFP but not PKI-GFP cells led to a loss of central actin stress fibers and decreases in the number of focal adhesion complexes. This loss of stress fibers was associated with dephosphorylation of the actin-depolymerizing protein cofilin in GFP but not PKI-GFP cells. To confirm that phosphorylated HSP20 plays a role in PKA-induced ASM relaxation, intact strips of bovine ASM were precontracted with serotonin followed by ISO. Activation of the PKA pathway led to relaxation of bovine ASM, which was associated with phosphorylation of HSP20 and dephosphorylation of cofilin. Finally, treatment with phosphopeptide mimetics of HSP20 possessing a protein transduction domain partially relaxed precontracted bovine ASM strips. In summary, ISO-induced phosphorylation of HSP20 or synthetic phosphopeptide analogs of HSP20 decreases phosphorylation of cofilin and disrupts actin in ASM, suggesting that one possible mechanism by which HSP20 mediates ASM relaxation is via regulation of actin filament dynamics.
机译:cAMP / cAMP依赖性PKA通路的激活导致气道平滑肌(ASM)松弛。这项研究的目的是检查小的热休克相关蛋白HSP20在介导PKA依赖性ASM松弛中的作用。人类ASM细胞经过工程改造,可组成型表达绿色荧光蛋白-PKA抑制性融合蛋白(PKI-GFP)或单独表达GFP。异丙基肾上腺素(ISO)或毛喉素对cAMP依赖性信号通路的激活导致GFP中HSP20的磷酸化增加,但PKI-GFP细胞中没有。在GFP中而不是PKI-GFP细胞中用Forskolin处理会导致中央肌动蛋白应激纤维丢失,并减少粘着斑复合物的数量。应力纤维的这种损失与GFP中肌动蛋白解聚蛋白cofilin的去磷酸化有关,而与PKI-GFP细胞无关。为了确认磷酸化的HSP20在PKA诱导的ASM松弛中发挥作用,将完整的牛ASM条先与5-羟色胺再紧随ISO进行收缩。 PKA途径的激活导致牛ASM松弛,这与HSP20的磷酸化和cofilin的去磷酸化有关。最后,用具有蛋白质转导结构域的HSP20磷酸肽模拟物处理部分松弛的预收缩牛ASM条。总之,ISO诱导的HSP20磷酸化或HSP20的合成磷酸肽类似物降低了ASM中cofilin的磷酸化并破坏肌动蛋白,这表明HSP20介导ASM松弛的一种可能机制是通过调节肌动蛋白丝的动力学。

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