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跨越巨大鸿沟:植物细胞表面连续体

Across the great divide: the plant cell surface continuum.

作者信息

McKenna Joseph F, Tolmie A Frances, Runions John

机构信息

Plant Cell Biology, Oxford Brookes University, Department of Biological & Medical Sciences, Gipsy Lane, Oxford OX3 0BP, UK.

Plant Cell Biology, Oxford Brookes University, Department of Biological & Medical Sciences, Gipsy Lane, Oxford OX3 0BP, UK.

出版信息

Curr Opin Plant Biol. 2014 Dec;22:132-140. doi: 10.1016/j.pbi.2014.11.004.

Abstract

The plant cell wall, plasma membrane and cytoskeleton exist as a cell surface continuum. This interconnection of organelles forms the interface between the plant cell and the external environment and is important for detecting the presence of a diverse range of stimuli. A plethora of plasma membrane microdomains with putative roles in membrane localized enzymatic or signalling processes have been described. While regulation of cell wall composition is defined by proteins within the plasma membrane, the cell wall has been shown to have an anchoring role on plasma membrane proteins which affects their lateral mobility. This interplay between plasma membrane and cell wall components is necessary for plasma membrane microdomain function. Actin and microtubule cytoskeletons are also involved in maintenance and function of the cell surface continuum. Investigation of the interactions between organellar components of this mechanism are important if we are to understand how cells respond to external signals.

摘要

植物细胞壁、质膜和细胞骨架作为一个细胞表面连续体存在。细胞器的这种相互连接形成了植物细胞与外部环境之间的界面,对于检测各种刺激的存在非常重要。已经描述了大量在膜定位的酶促或信号传导过程中具有假定作用的质膜微结构域。虽然细胞壁组成的调节由质膜内的蛋白质定义,但细胞壁已被证明对质膜蛋白具有锚定作用,这会影响它们的侧向流动性。质膜和细胞壁成分之间的这种相互作用对于质膜微结构域的功能是必要的。肌动蛋白和微管细胞骨架也参与细胞表面连续体的维持和功能。如果我们要了解细胞如何响应外部信号,研究该机制的细胞器成分之间的相互作用就很重要。

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