首页> 外文期刊>The Journal of Physiology >Inhibition of contraction and myosin light chain phosphorylation in guinea-pig smooth muscle by p21-activated kinase 1.
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Inhibition of contraction and myosin light chain phosphorylation in guinea-pig smooth muscle by p21-activated kinase 1.

机译:p21活化激酶1抑制豚鼠平滑肌收缩和肌球蛋白轻链磷酸化。

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The p21-activated protein kinases (PAKs) have been implicated in cytoskeletal rearrangements and modulation of non-muscle contractility. Little, however, is known about the role of the PAK family members in smooth muscle contraction. Therefore, we investigated the effect of the predominant isoform in vascular smooth muscle cells, PAK1, on contraction and phosphorylation of the regulatory light chains of myosin (r-MLC) in Triton-skinned guinea-pig smooth muscle. We also investigated which of the three putative substrates at the contractile apparatus - MLCK, caldesmon or r-MLC - is phosphorylated by PAK1 in smooth muscle tissue. Incubation of Triton-skinned carotid artery and taenia coli from guinea-pig with an active mutant of PAK1 in relaxing solution for 30-60 min resulted in inhibition of submaximal force by about 50 %. The mechanism of inhibition of force was studied in the Triton-skinned taenia coli. In this preparation, inhibition of force was associated with a respective inhibition of r-MLC phosphorylation. In the presence of the myosin phosphatase inhibitor, microcystin-LR (10 microM), the rate of contraction and r-MLC phosphorylation elicited at pCa 6.79 were both decreased. Because under these conditions the rate of r-MLC phosphorylation is solely dependent on MLCK activity, this result suggests that the inhibitory effect of PAK1 on steady-state force and r-MLC phosphorylation is due to inhibition of MLCK. In line with this, we found that MLCK was significantly phosphorylated by PAK1 while there was very little 32P incorporation into caldesmon. PAK1 phosphorylated isolated r-MLC but not those in the skinned fibres or in purified smooth muscle myosin II. In conclusion, these results suggest that PAK1 attenuates contraction of skinned smooth muscle by phosphorylating and inhibiting MLCK.
机译:p21激活的蛋白激酶(PAKs)与细胞骨架重排和非肌肉收缩能力的调节有关。然而,关于PAK家族成员在平滑肌收缩中的作用知之甚少。因此,我们研究了Triton皮豚鼠平滑肌中肌球蛋白(r-MLC)调节性轻链的收缩和磷酸化对血管平滑肌细胞PAK1中主要亚型的影响。我们还研究了收缩装置中三种假定的底物-MLCK,caldesmon或r-MLC中的哪一种在平滑肌组织中被PAK1磷酸化。在松弛溶液中将带有豚鼠的Triton皮肤的颈动脉和带状疱疹与PAK1的活性突变体一起温育30-60分钟,可将最大作用力抑制约50%。在Triton皮肤的虫中研究了抑制力的机制。在该制剂中,力的抑制与r-MLC磷酸化的相应抑制有关。在肌球蛋白磷酸酶抑制剂微囊藻毒素-LR(10 microM)的存在下,pCa 6.79引起的收缩率和r-MLC磷酸化均降低。因为在这些条件下,r-MLC磷酸化的速率仅取决于MLCK活性,所以该结果表明PAK1对稳态力和r-MLC磷酸化的抑制作用是由于MLCK的抑制。与此相符,我们发现MLCK被PAK1显着磷酸化,而几乎没有32P掺入caldesmon中。 PAK1磷酸化了分离的r-MLC,但未使皮肤纤维或纯化的平滑肌肌球蛋白II磷酸化。总之,这些结果表明PAK1通过磷酸化和抑制MLCK来减弱皮肤平滑肌的收缩。

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