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Silencing of p21-activated kinase attenuates vimentin phosphorylation on Ser-56 and reorientation of the vimentin network during stimulation of smooth muscle cells by 5-hydroxytryptamine

机译:p21激活激酶的沉默可减弱5-羟色胺刺激平滑肌细胞过程中Ser-56上波形蛋白的磷酸化和波形蛋白网络的重新定向

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摘要

Vimentin intermediate filaments undergo spatial reorganization in endothelial cells and fibroblasts in response to stimulation with platelet-derived growth factor and epidermal growth factor. In the present study, the vimentin network exhibited a curved filamentous structure in unstimulated smooth muscle cells. Vimentin filaments became straight and were arranged along the long axis of cells upon stimulation with 5-hydroxytryptamine (5-HT; serotonin). Stimulation of smooth muscle cells with 5-HT also induced phosphorylation of vimentin on Ser-56. Treatment of cells with small interfering RNA selectively down-regulated the expression of PAK1 (p21-activated kinase 1) without affecting the content of smooth muscle α-actin. The silencing of PAK1 inhibited the site-specific phosphorylation and spatial rearrangement of the vimentin network in response to stimulation with 5-HT. Neither the disruption of stress fibres by cytochalasin D nor the inhibition of protein tyrosine phosphorylation affects the spatial reorganization of vimentin intermediate filaments in response to stimulation with 5-HT. In addition, stimulation of smooth muscle cells with 5-HT increased the ratio of soluble to insoluble vimentin. PAK1 silencing attenuated increases in the ratio of soluble to insoluble vimentin upon stimulation with 5-HT. These results suggest that the PAK-mediated site-specific phosphorylation of vimentin may play a role in regulating the reorganization of vimentin intermediate filaments during stimulation of smooth muscle cells with 5-HT.
机译:波形蛋白中间丝响应于血小板衍生的生长因子和表皮生长因子的刺激而在内皮细胞和成纤维细胞中经历空间重组。在本研究中,波形蛋白网络在未刺激的平滑肌细胞中表现出弯曲的丝状结构。波形蛋白细丝变直,并在用5-羟色胺(5-HT; 5-羟色胺)刺激后沿细胞的长轴排列。用5-HT刺激平滑肌细胞也诱导波形蛋白在Ser-56上的磷酸化。用小的干扰RNA处理细胞可选择性下调PAK1(p21激活的激酶1)的表达,而不会影响平滑肌α-肌动蛋白的含量。 PAK1的沉默抑制了响应5-HT刺激的波形蛋白网络的位点特异性磷酸化和空间重排。细胞松弛素D破坏应激纤维或抑制蛋白酪氨酸磷酸化都不会影响波形蛋白中间丝响应5-HT刺激的空间重组。另外,用5-HT刺激平滑肌细胞增加了可溶性波形蛋白和不溶波形蛋白的比例。在用5-HT刺激后,PAK1沉默减弱,可溶性波形蛋白和不溶波形蛋白的比例增加。这些结果表明,PAK介导的波形蛋白的位点特异性磷酸化可能在调节5-HT刺激平滑肌细胞过程中,调节波形蛋白中间丝的重组。

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