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绿色王国中的微管组织:混乱还是自我有序?

Microtubule organization in the green kingdom: chaos or self-order?

作者信息

Wasteneys Geoffrey O

机构信息

Plant Cell Biology Group, Research School of Biological Sciences, The Australian National University, GPO Box 475, Canberra ACT 2601, Australia.

出版信息

J Cell Sci. 2002 Apr 1;115(Pt 7):1345-54. doi: 10.1242/jcs.115.7.1345.

Abstract

Plant microtubule arrays differ fundamentally from their animal, fungal and protistan counterparts. These differences largely reflect the requirements of plant composite polymer cell walls and probably also relate to the acquisition of chloroplasts. Plant microtubules are usually dispersed and lack conspicuous organizing centres. The key to understanding this dispersed nature is the identification of proteins that interact with and regulate the spatial and dynamic properties of microtubules. Over the past decade, a number of these proteins have been uncovered, including numerous kinesin-related proteins and a 65 kDa class of structural microtubule-associated proteins that appear to be unique to plants. Mutational analysis has identified MOR1, a probable stabilizer of microtubules that is a homologue of the TOGp-XMAP215 class of high-molecular-weight microtubule-associated proteins, and a katanin p60 subunit homologue implicated in the severing of microtubules. The identification of these two proteins provides new insights into the mechanisms controlling microtubule assembly and dynamics, particularly in the dispersed cortical array found in highly polarized plant cells.

摘要

植物微管阵列与动物、真菌和原生生物的微管阵列有着根本的不同。这些差异很大程度上反映了植物复合聚合物细胞壁的需求,可能也与叶绿体的获得有关。植物微管通常是分散的,缺乏明显的组织中心。理解这种分散性质的关键在于识别与微管相互作用并调节其空间和动态特性的蛋白质。在过去十年中,已经发现了许多这类蛋白质,包括大量与驱动蛋白相关的蛋白质以及一类似乎是植物特有的65 kDa结构微管相关蛋白质。突变分析确定了MOR1,它可能是微管的稳定剂,是高分子量微管相关蛋白质TOGp-XMAP215类的同源物,以及一种与微管切断有关的katanin p60亚基同源物。这两种蛋白质的鉴定为控制微管组装和动态的机制提供了新的见解,特别是在高度极化的植物细胞中发现的分散皮层阵列中。

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