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New horizons in cytoskeletal dynamics: transport of intermediate filaments along microtubule tracks.

机译:细胞骨架动力学的新视野:中间丝沿着微管轨道的运输。

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Until recently, the dynamic properties of intermediate filaments (IF) were attributed primarily to the exchange of subunits between a disassembled pool and polymerized 10nm filaments. During interphase, this subunit exchange process was thought to produce local modifications in IF structure. During cell division, shifts in the equilibrium between subunits and polymers were thought to lead to either the global or regional disassembly of IF networks, thereby facilitating their distribution into daughter cells. Recently, novel structural forms of IF that undergo rapid and directed transport in several cell types were revealed. Time-lapse observations of motile IF structures in different cell systems have also revealed novel insights into the mechanisms underlying the transport of cytoskeletal components throughout the cytoplasm and the molecular basis of the 'crosstalk' between different cytoskeletal systems.
机译:直到最近,中间细丝(IF)的动态特性主要归因于分解池和聚合的10nm细丝之间的亚基交换。在相间期,该亚基交换过程被认为会在IF结构中产生局部修饰。在细胞分裂过程中,人们认为亚基和聚合物之间平衡的变化会导致IF网络的整体或区域分解,从而促进其在子细胞中的分布。最近,揭示了在几种细胞类型中经历快速和定向转运的IF的新型结构形式。对不同细胞系统中运动型IF结构的时移观察还揭示了对细胞骨架成分在整个细胞质中运输的基本机制以及不同细胞骨架系统之间“串扰”的分子基础的新见解。

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