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高等植物中的微管相关蛋白。

Microtubule-associated proteins in higher plants.

作者信息

Hamada Takahiro

机构信息

Department of Life Science, Graduate School of Life Science, University of Hyogo, Harima Science Park City, Hyogo 678-1297, Japan.

出版信息

J Plant Res. 2007 Jan;120(1):79-98. doi: 10.1007/s10265-006-0057-9. Epub 2007 Feb 7.

Abstract

A variety of microtubule-associated proteins (MAPs) have been reported in higher plants. Microtubule (MT) polymerization starts from the gamma-tubulin complex (gammaTuC), a component of the MT nucleation site. MAP200/MOR1 and katanin regulate the length of the MT by promoting the dynamic instability of MTs and cutting MTs, respectively. In construction of different MT structures, MTs are bundled or are associated with other components--actin filaments, the plasma membrane, and organelles. The MAP65 family and some of kinesin family are important in bundling MTs. MT plus-end-tracking proteins (+TIPs) including end-binding protein 1 (EB1), Arabidopsis thaliana kinesin 5 (ATK5), and SPIRAL 1 (SPR1) localize to the plus end of MTs. It has been suggested that +TIPs are involved in binding of MT to other structures. Phospholipase D (PLD) is a possible candidate responsible for binding of MTs to the plasma membrane. Many candidates have been reported as actin-binding MAPs, for example calponin-homology domain (KCH) family kinesin, kinesin-like calmodulin-binding protein (KCBP), and MAP190. RNA distribution and translation depends on MT structures, and several RNA-related MAPs have been reported. This article gives an overview of predicted roles of these MAPs in higher plants.

摘要

在高等植物中已报道了多种微管相关蛋白(MAPs)。微管(MT)聚合起始于γ-微管蛋白复合体(γTuC),它是微管成核位点的一个组成部分。MAP200/MOR1和katanin分别通过促进微管的动态不稳定性和切割微管来调节微管的长度。在构建不同的微管结构时,微管会成束或与其他组分——肌动蛋白丝、质膜和细胞器相关联。MAP65家族和一些驱动蛋白家族在微管成束过程中很重要。包括末端结合蛋白1(EB1)、拟南芥驱动蛋白5(ATK5)和螺旋蛋白1(SPR1)在内的微管正端追踪蛋白(+TIPs)定位于微管的正端。有人提出+TIPs参与微管与其他结构的结合。磷脂酶D(PLD)可能是负责微管与质膜结合的候选蛋白。已报道了许多作为肌动蛋白结合MAPs的候选蛋白,例如钙调蛋白同源结构域(KCH)家族驱动蛋白、类驱动蛋白钙调蛋白结合蛋白(KCBP)和MAP190。RNA分布和翻译取决于微管结构,并且已报道了几种与RNA相关的MAPs。本文概述了这些MAPs在高等植物中的预测作用。

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