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通过从哺乳动物表达系统中进行免疫筛选克隆出的植物质膜水通道。

Water channels in the plant plasma membrane cloned by immunoselection from a mammalian expression system.

作者信息

Kammerloher W, Fischer U, Piechottka G P, Schäffner A R

机构信息

Institut für Biochemie, Ludwig-Maximilians-Universität, München, Germany.

出版信息

Plant J. 1994 Aug;6(2):187-99. doi: 10.1046/j.1365-313x.1994.6020187.x.

Abstract

Expression in mammalian COS cells and an efficient microtiter-based strategy for immunoselection was used in a novel approach to identify genes encoding plant membrane proteins. COS cells were transfected with an Arabidopsis thaliana root cDNA library constructed in a bacterial mammalian shuttle vector and screened with an antiserum raised against purified deglycosylated integral plasma membrane proteins from A. thaliana roots. Antibodies directed against a prominent 27 kDa antigen led to the identification of five different genes. They comprised two subfamilies related to the major intrinsic protein (MIP) superfamily and were named plasma membrane intrinsic proteins, PIP1 and PIP2, since the cellular localization of PIP1 and most probably PIP2 proteins in the plasma membrane was independently confirmed by their cosegregation with marker enzymes during aqueous two-phase partitioning. Surprisingly, expression in Xenopus laevis oocytes revealed that all five PIP mRNAs coded for Hg(2+)-sensitive water transport facilitating activities. There had been no previous evidence of the existence of water channels in the plasma membrane of plant cells and the high diffusional water permeability of the lipid bilayer was considered to be sufficient for water exchange. Nevertheless, Northern and Western analyses showed that the PIP genes are constitutively and possibly even redundantly expressed from the small A. thaliana genome.

摘要

在一种鉴定编码植物膜蛋白基因的新方法中,使用了在哺乳动物COS细胞中的表达以及基于微量滴定板的高效免疫筛选策略。用构建于细菌-哺乳动物穿梭载体中的拟南芥根cDNA文库转染COS细胞,并用针对从拟南芥根中纯化的去糖基化整合质膜蛋白产生的抗血清进行筛选。针对一种突出的27 kDa抗原的抗体导致鉴定出五个不同的基因。它们包括与主要内在蛋白(MIP)超家族相关的两个亚家族,被命名为质膜内在蛋白,PIP1和PIP2,因为在水相两相分配过程中,PIP1以及很可能PIP2蛋白与标记酶的共分离独立证实了它们在质膜中的细胞定位。令人惊讶的是,在非洲爪蟾卵母细胞中的表达表明,所有五个PIP mRNA都编码对Hg(2+)敏感的促进水运输的活性。以前没有证据表明植物细胞质膜中存在水通道,并且脂质双分子层的高扩散水渗透性被认为足以进行水交换。然而,Northern和Western分析表明,PIP基因在拟南芥小基因组中组成性表达,甚至可能是冗余表达。

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