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首页> 外文期刊>Journal of Muscle Research and Cell Motility >New insights into myosin phosphorylation during cyclic nucleotide-mediated smooth muscle relaxation.
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New insights into myosin phosphorylation during cyclic nucleotide-mediated smooth muscle relaxation.

机译:环状核苷酸介导的平滑肌松弛过程中肌球蛋白磷酸化的新见解。

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Nitrovasodilators and agonists, via an increase in intracellular cyclic nucleotide levels, can induce smooth muscle relaxation without a concomitant decrease in phosphorylation of the regulatory light chains (RLC) of myosin. However, since cyclic nucleotide-induced relaxation is associated with a decrease in intracellular [Ca(2+)], and hence, a decreased activity of MLCK, we tested the hypothesis that the site responsible for the elevated RLC phosphorylation is not Ser19. Smooth muscle strips from gastric fundus were isometrically contracted with ET-1 which induced an increase in monophosphorylation from 9?±?1?% under resting conditions (PSS) to 36?±?1?% determined with 2D-PAGE. Electric field stimulation induced a rapid, largely NO-mediated relaxation with a half time of 8?s, which was associated with an initial decline in RLC phosphorylation to 18?% within 2?s and a rebound to 34?% after 30?s whereas relaxation was sustained. In contrast, phosphorylation of RLC at Ser19 probed with phosphospecific antibodies declined in parallel with force. LC/MS and western blot analysis with phosphospecific antibodies against monophosphorylated Thr18 indicate that Thr18 is significantly monophosphorylated during sustained relaxation. We therefore suggest that (i) monophosphorylation of Thr18 rather than Ser19 is responsible for the phosphorylation rebound during sustained EFS-induced relaxation of mouse gastric fundus, and (ii) that relaxation can be ascribed to dephosphorylation of Ser19, the site considered to be responsible for regulation of smooth muscle tone.
机译:硝基血管扩张剂和激动剂通过细胞内环状核苷酸水平的增加,可以诱导平滑肌松弛,而肌球蛋白的调节性轻链(RLC)的磷酸化却不会随之下降。但是,由于环状核苷酸诱导的弛豫与细胞内[Ca(2+)]的减少相关,因此MLCK的活性降低,因此我们测试了导致RLC磷酸化升高的位点不是Ser19的假说。胃底的平滑肌条与ET-1等距收缩,从而使单磷酸化水平从静息条件下(PSS)的9?±?1?%增加到2D-PAGE测定的36?±?1?%。电场刺激引起快速的,很大程度上由NO介导的弛豫,半衰期为8?s,这与RLC磷酸化作用在2?s内最初下降至18?%,并在30?s后反弹至34?%有关。而放松是持续的。相反,用磷酸特异性抗体探测的Ser19处的RLC磷酸化与力平行下降。 LC / MS和使用针对单磷酸化Thr18的磷酸化特异性抗体进行的蛋白质印迹分析表明,Thr18在持续松弛过程中明显被单磷酸化。因此,我们建议(i)在持续EFS诱导的小鼠胃底松弛期间,Thr18而不是Ser19的单磷酸化负责磷酸化反弹,并且(ii)松弛可归因于Ser19的去磷酸化,该位点被认为是负责的用于调节平滑肌音调。

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