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壁与膜连接体、牵张激活通道以及张力、电压、温度、生长素和pH的检测

Wall to membrane linkers, stretch activated channels, and the detection of tension, voltage, temperature, auxin, and pH.

作者信息

Pickard B G

机构信息

Department of Biology, Washington University, St. Louis, MO.

出版信息

ASGSB Bull. 1992 Oct;6(1):31.

Abstract

Introduction. The higher plant is a heterogeneous, mechanically prestressed structure continually subject to shifting forces. When a cell grows in a plant at gravitropic equilibrium, it must create localized maxima of shear in walls of neighboring cells. Such mechanical stress and strain are likely detected in a variety of ways. However, tension-sensitive ion channels are of particular interest because it appears that they are elaborately evolved for sensory function. We hypothesize that 1) the patchy patterns of high shear are focused via wall-to-membrane linkers onto the plasma membrane, where 2) they are translated by mechanosensory cation channels into corresponding patterns of high cytosolic Ca2+, which 3) initiate local enhancement of wall expansion. Further, we hypothesize that the local promotion of enhancement is achieved at least in part by local intensification of auxin transport across the plasma membrane. By implication, when an organ is asymmetrically pressed, rubbed, or bent or when it is displaced in the gravitational field, the net asymmetry of shear stress occurring across the organ would lead to asymmetric redistribution of auxin and corrective asymmetric growth. We shall describe a representative mechanosensitive Ca(2+) -selective cation channel (MCaC) with susceptibilities to xenobiotics implicating it as a force transducer in thigmo- and gravitropism. Then, we shall consider whether a putative wall-to-membrane linker (WML) could be a key feature of the molecular architecture permitting the stress distributed in the wall system to be focused on the channels.

摘要

引言。高等植物是一种异质的、机械预应力结构,不断受到变化的力的作用。当一个细胞在处于重力平衡的植物中生长时,它必须在相邻细胞的细胞壁中产生局部的剪切力最大值。这种机械应力和应变可能通过多种方式被检测到。然而,张力敏感离子通道特别令人感兴趣,因为它们似乎是为了感觉功能而精心进化的。我们假设:1)高剪切力的斑块状模式通过壁与膜的连接物聚焦到质膜上,在质膜上,2)它们被机械感觉阳离子通道转化为相应的高细胞质Ca2+模式,3)这些模式启动细胞壁扩张的局部增强。此外,我们假设这种增强的局部促进至少部分是通过质膜上生长素运输的局部强化实现的。这意味着,当一个器官受到不对称挤压、摩擦或弯曲,或者当它在重力场中移位时,整个器官上出现的剪切应力的净不对称会导致生长素的不对称重新分布和矫正性不对称生长。我们将描述一种具有对异生素敏感性的代表性机械敏感Ca(2+)选择性阳离子通道(MCaC),暗示它是触觉和向重力性中的力传感器。然后,我们将考虑一种假定的壁与膜连接物(WML)是否可能是分子结构的一个关键特征,使得分布在壁系统中的应力能够集中在通道上。

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