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中间丝的动态和运动特性。

The dynamic and motile properties of intermediate filaments.

作者信息

Helfand Brian T, Chang Lynne, Goldman Robert D

机构信息

Department of Cell and Molecular Biology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois 60611, USA.

出版信息

Annu Rev Cell Dev Biol. 2003;19:445-67. doi: 10.1146/annurev.cellbio.19.111401.092306.

Abstract

For many years, cytoplasmic intermediate filaments (IFs) were considered to be stable cytoskeletal elements contributing primarily to the maintenance of the structural and mechanical integrity of cells. However, recent studies of living cells have revealed that IFs and their precursors possess a remarkably wide array of dynamic and motile properties. These properties are in large part due to interactions with molecular motors such as conventional kinesin, cytoplasmic dynein, and myosin. The association between IFs and motors appears to account for much of the well-documented molecular cross talk between IFs and the other major cytoskeletal elements, microtubules, and actin-containing microfilaments. Furthermore, the associations with molecular motors are also responsible for the high-speed, targeted delivery of nonfilamentous IF protein cargo to specific regions of the cytoplasm where they polymerize into IFs. This review considers the functional implications of the motile properties of IFs and discusses the potential relationships between malfunctions in these motile activities and human diseases.

摘要

多年来,细胞质中间丝(IFs)被认为是稳定的细胞骨架成分,主要有助于维持细胞的结构和机械完整性。然而,最近对活细胞的研究表明,中间丝及其前体具有一系列非常广泛的动态和运动特性。这些特性在很大程度上归因于与分子马达的相互作用,如传统驱动蛋白、细胞质动力蛋白和肌球蛋白。中间丝与马达之间的关联似乎解释了许多已被充分记录的中间丝与其他主要细胞骨架成分(微管和含肌动蛋白的微丝)之间的分子相互作用。此外,与分子马达的关联还负责将非丝状中间丝蛋白货物高速、靶向递送至细胞质的特定区域,在那里它们聚合成中间丝。本综述考虑了中间丝运动特性的功能意义,并讨论了这些运动活动故障与人类疾病之间的潜在关系。

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