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坦斯利评论第21号:植物离子通道——全细胞和单通道研究

Tansley Review No. 21 Plant ion channels: whole-cell and single channel studies.

作者信息

Tester Mark

机构信息

Botany School, Downing St, Cambridge, CB2 3EA, UK.

出版信息

New Phytol. 1990 Mar;114(3):305-340. doi: 10.1111/j.1469-8137.1990.tb00403.x.

Abstract

Ion channels are proteins which catalyse rapid, passive, electrogenic uniport of ions through pores spanning an otherwise poorly permeable lipid bilayer. Among other processes, fluxes through ion channels are responsible for action potentials - large, transient changes in membrane potential which have been known of in plants for over 100 years. Much disparate information on ion channels in plant cells has accumulated over the past few years. In an attempt to synthesize these data, the properties of at least 18 different ion channels are collated in this review. Channels are initially classified according to ion selectivity (Ca , Cl , K and H ); then gating characteristics (i.e. control of opening and closing), unitary conductance and pharmacology are used to distinguish further different sub-types of channels. To provide a background for this overview, the fundamental properties which define ion channels in animal cells, namely conduction, selectivity and gating, are described. Appropriate techniques for the study of ion channels are also assessed. The review concludes with a discussion on the role of ion channels in plant cells, although any comment on functions beyond turgor regulation and general statements about signalling remains largely speculative. The study of ion channels in plant cells is still at an early stage and it is hoped that this review will provide a framework upon which further work in both algae and vascular plants can be based. CONTENTS Summary 305 I. Introduction: plant electrophysiology 306 II. A general description of ion channels 306 III. Ion channels in plants 310 IV. Ca channels 313 V. Cl channels 315 VI. K channels in the plasma membrane 318 VII. K channels in the tonoplast 322 VIII. Channels in thylakoids 324 IX. H channels 324 X. Functions of channels 325 XI. Conclusions 328 Acknowledgements 328 References 329.

摘要

离子通道是一类蛋白质,它们通过跨越原本低通透性脂质双层的孔道,催化离子进行快速、被动、电生性的单向运输。在其他生理过程中,通过离子通道的离子通量与动作电位有关——动作电位是膜电位的大幅、瞬态变化,在植物中已被知晓超过100年。在过去几年里,关于植物细胞中离子通道的大量不同信息不断积累。为了综合这些数据,本综述整理了至少18种不同离子通道的特性。通道最初根据离子选择性(Ca²⁺、Cl⁻、K⁺和H⁺)进行分类;然后利用门控特性(即对通道开闭的控制)、单通道电导和药理学来进一步区分不同的通道亚型。为了给本综述提供背景知识,文中描述了动物细胞中定义离子通道的基本特性,即传导、选择性和门控。还评估了研究离子通道的合适技术。本综述最后讨论了离子通道在植物细胞中的作用,不过关于除膨压调节之外的功能以及有关信号转导的一般性陈述,很大程度上仍属推测。植物细胞中离子通道的研究仍处于早期阶段,希望本综述能为藻类和维管植物的进一步研究提供一个框架。

目录

摘要305

一、引言:植物电生理学306

二、离子通道的一般描述306

三、植物中的离子通道310

四、Ca²⁺通道313

五、Cl⁻通道315

六、质膜中的K⁺通道318

七、液泡膜中的K⁺通道322

八、类囊体中的通道324

九、H⁺通道324

十、通道的功能325

十一、结论328

致谢328

参考文献329

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