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Myosin phosphorylation triggers actin polymerization in vascular smooth muscle.

机译:肌球蛋白磷酸化触发血管平滑肌中的肌动蛋白聚合。

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摘要

A variety of contractile stimuli increases actin polymerization, which is essential for smooth muscle contraction. However, the mechanism(s) of actin polymerization associated with smooth muscle contraction is not fully understood. We tested the hypothesis that phosphorylated myosin triggers actin polymerization. The present study was conducted in isolated intact or beta-escin-permeabilized rat small mesenteric arteries. Reductions in the 20-kDa myosin regulatory light chain (MLC20) phosphorylation were achieved by inhibiting MLC kinase with ML-7. Increases in MLC20 phosphorylation were achieved by inhibiting myosin light chain phosphatase with microcystin. Isometric force, the degree of actin polymerization as indicated by the F-actin-to-G-actin ratio, and MLC20 phosphorylation were determined. Reductions in MLC20 phosphorylation were associated with a decreased force development and actin polymerization. Increased MLC20 phosphorylation was associated with an increased force generation and actin polymerization. We also found that a heptapeptide that mimics the actin-binding motif of myosin II enhanced microcystin-induced force generation and actin polymerization without affecting MLC20 phosphorylation in beta-escin-permeabilized vessels. Collectively, our data demonstrate that MLC20 phosphorylation is capable of triggering actin polymerization. We further suggest that the binding of myosin to actin triggers actin polymerization and enhances the force development in arterial smooth muscle.
机译:各种收缩刺激增加肌动蛋白聚合,这对于平滑肌肉收缩至关重要。然而,不完全理解与平滑肌收缩相关的肌动蛋白聚合的机制。我们测试了磷酸化肌蛋白触发肌动蛋白聚合的假设。本研究在分离的完整或β-esc型渗透大鼠小肠系膜中进行。通过抑制ML-7来实现20-KDA肌球蛋白调节轻链(MLC20)磷酸化的降低。通过用微囊藻蛋白抑制肌蛋白轻链磷酸酶来实现MLC20磷酸化的增加。等轴力,如F-actin-〜G-肌蛋白比所示的肌动蛋白聚合程度和MLC 20磷酸化。在MLC20磷酸化中减少与降低的力发育和肌动蛋白聚合有关。增加的MLC20磷酸化与增加的力产生和肌动蛋白聚合有关。我们还发现模拟肌蛋白II的肌动蛋白结合基序的七肽增强了微囊藻毒素诱导的力产生和肌动蛋白聚合,而不影响β塞霉素渗透血管中的MLC 20磷酸化。集体,我们的数据表明MLC20磷酸化能够引发肌动蛋白聚合。我们进一步表明,肌球蛋白与肌动蛋白的结合触发肌动蛋白聚合并增强动脉平滑肌中的力发育。

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