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首页> 外文期刊>Journal of Cell Science >A novel taxol-induced vimentin phosphorylation and stabilization revealed by studies on stable microtubules and vimentin intermediate filaments
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A novel taxol-induced vimentin phosphorylation and stabilization revealed by studies on stable microtubules and vimentin intermediate filaments

机译:通过稳定的微管和波形蛋白中间丝的研究揭示了一种新型的紫杉醇诱导波形蛋白的磷酸化和稳定化。

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摘要

To understand how protein phosphorylation modulates cytoskeletal organization, we used immunofluorescence microscopy to examine the effects of okadaic acid, a serine/threonine protein phosphatase inhibitor, and taxol, a microtubule-stabilizing agent, on stable (acetylated and detyrosinated) microtubules, vimentin intermediate filaments and other cytoskeletal elements in CV-1 cells. Okadaic acid caused major changes:in both stable microtubules and vimentin intermediate filaments, but through independent mechanisms. At 300 nM, okadaic acid caused apparent fragmentation and loss of stable microtubules which was not prevented by prior exposure to K252a, In contrast, major reorganization of vimentin intermediate filaments elicited at 750 nM okadaic acid was prevented by prior exposure to K252a, Taxol pretreatment blocked the effects of okadaic acid on stable microtubules and vimentin intermediate filaments. Recent reports have revealed that taxol can activate cellular signal transduction pathways in addition to its known ability to promote microtubule stabilization, so the possibility that taxol-induced resistance of vimentin intermediate filaments to okadaic acid was through a microtubule-independent mechanism involving direct phosphorylation of intermediate filament proteins was explored. Vimentin immunoprecipitation from cytoskeletal extracts from P-32-labeled cells revealed that taxol (4 mu M, 1 or 2 hours) caused about a 2-fold increase in vimentin phosphorylation, This phosphorylation was recovered exclusively in cytoskeletal vimentin, in contrast to the increased phosphorylation of soluble and cytoskeletal vimentin caused by exposure to 750 nM okadaic acid, Phosphorylation of soluble and cytoskeletal vimentin from cells exposed to taxol (4 mu M, 1 hour) then okadaic acid (750 nM, 1 hour) was comparable to taxol-treatment alone, These findings demonstrate a novel new activity of taxol, induction of vimentin phosphorylation, that may impact organization and stability. [References: 34]
机译:为了了解蛋白质磷酸化如何调节细胞骨架组织,我们使用免疫荧光显微镜检查了冈田酸(一种丝氨酸/苏氨酸蛋白质磷酸酶抑制剂)和紫杉醇(一种微管稳定剂)对稳定的(乙酰化和去酪氨酸化的)微管,波形蛋白中间丝的影响。和CV-1细胞中的其他细胞骨架元素。冈田酸引起了重大变化:无论是稳定的微管还是波形蛋白中间丝,都通过独立的机制发生了变化。在300 nM时,冈田酸会导致明显的碎片化和稳定的微管损失,这不能通过事先暴露于K252a来预防。相反,通过预先暴露于K252a,冈田酸在750 nM冈田酸引起的波形蛋白中间丝的主要重组得以阻止,紫杉醇预处理被阻断冈田酸对稳定的微管和波形蛋白中间丝的影响。最近的报道表明,紫杉醇除了具有促进微管稳定的已知能力外,还可以激活细胞信号转导途径,因此,紫杉醇诱导波形蛋白中间丝对冈田酸的抗性可能是通过微管独立机制引起的,该机制涉及中间体的直接磷酸化。探索丝蛋白。来自P-32标记细胞的细胞骨架提取物的波形蛋白免疫沉淀表明,紫杉醇(4μM,1或2小时)引起波形蛋白磷酸化增加约2倍,而磷酸化仅在细胞骨架波形蛋白中恢复,与之相比有所增加暴露于750 nM冈田酸引起的可溶性和细胞骨架波形蛋白的磷酸化,先暴露于紫杉醇(4μM,1小时),然后经过冈田酸(750 nM,1小时)的细胞使可溶性和细胞骨架波形素磷酸化,与紫杉醇处理相当仅这些发现就证明了紫杉酚的新活性,即波形蛋白磷酸化的诱导,可能影响组织和稳定性。 [参考:34]

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