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Vimentin organization modulates the formation of lamellipodia

机译:波形蛋白的组织调节层状脂蛋白的形成

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摘要

Vimentin intermediate filaments (VIF) extend throughout the rear and perinuclear regions of migrating fibroblasts, but only nonfilamentous vimentin particles are present in lamellipodial regions. In contrast, VIF networks extend to the entire cell periphery in serum-starved or nonmotile fibroblasts. Upon serum addition or activation of Rac1, VIF are rapidly phosphorylated at Ser-38, a p21-activated kinase phosphorylation site. This phosphorylation of vimentin is coincident with VIF disassembly at and retraction from the cell surface where lamellipodia form. Furthermore, local induction of photoactivatable Rac1 or the microinjection of a vimentin mimetic peptide (2B2) disassemble VIF at sites where lamellipodia subsequently form. When vimentin organization is disrupted by a dominant-negative mutant or by silencing, there is a loss of polarity, as evidenced by the formation of lamellipodia encircling the entire cell, as well as reduced cell motility. These findings demonstrate an antagonistic relationship between VIF and the formation of lamellipodia.
机译:波形蛋白中间丝(VIF)延伸到迁移的成纤维细胞的整个后部和核周区域,但在层状脂质体区域中仅存在无丝波形蛋白颗粒。相反,VIF网络延伸至血清饥饿或非运动性成纤维细胞中的整个细胞外围。血清添加或激活Rac1后,VIF在Ser-38(p21激活的激酶磷酸化位点)处迅速磷酸化。波形蛋白的这种磷酸化与在形成片状脂质体的细胞表面处的VIF分解相吻合。此外,可光活化的Rac1的局部诱导或波形蛋白模拟肽(2B2)的显微注射在随后形成片状脂质体的位点分解了VIF。当波形蛋白的组织被显性阴性突变体或沉默破坏时,极性就会丧失,这可以通过包围整个细胞的片状脂蛋白形成以及降低的细胞运动来证明。这些发现证明了VIF与片状脂蛋白形成之间的拮抗关系。

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