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酿酒酵母中膜转运蛋白概述。

An overview of membrane transport proteins in Saccharomyces cerevisiae.

作者信息

Andre B

机构信息

Laboratoire de Physiologie Cellulaire et de Genetique des Levures, Universite Libre de Bruxelles, Belgium.

出版信息

Yeast. 1995 Dec;11(16):1575-611. doi: 10.1002/yea.320111605.

Abstract

All eukaryotic cells contain a wide variety of proteins embedded in the plasma and internal membranes, which ensure transmembrane solute transport. It is now established that a large proportion of these transport proteins can be grouped into families apparently conserved throughout organisms. This article presents the data of an in silicio analysis aimed at establishing a preliminary classification of membrane transport proteins in Saccharomyces cerevisiae. This analysis was conducted at a time when about 65% of all yeast genes were available in public databases. In addition to approximately 60 transport proteins whose function was at least partially known, approximately 100 deduced protein sequences of unknown function display significant sequence similarity to membrane transport proteins characterized in yeast and/or other organisms. While some protein families have been well characterized by classical genetic experimental approaches, others have largely if not totally escaped characterization. The proteins revealed by this in silicio analysis also include a putative K+ channel, proteins similar to aquaporins of plant and animal origin, proteins similar to Na+-solute symporters, a protein very similar to electroneural cation-chloride cotransporters, and a putative Na+-H+ antiporter. A new research area is anticipated: the functional analysis of many transport proteins whose existence was revealed by genome sequencing.

摘要

所有真核细胞都含有多种嵌入质膜和内膜的蛋白质,这些蛋白质确保跨膜溶质运输。现已确定,这些运输蛋白中的很大一部分可以归类为在整个生物体中明显保守的家族。本文介绍了一项计算机分析的数据,旨在对酿酒酵母中的膜运输蛋白进行初步分类。这项分析是在约65%的酵母基因可在公共数据库中获取时进行的。除了约60种功能至少部分已知的运输蛋白外,约100个功能未知的推导蛋白质序列与酵母和/或其他生物体中已鉴定的膜运输蛋白显示出显著的序列相似性。虽然一些蛋白质家族已通过经典遗传实验方法得到很好的表征,但其他家族即使没有完全也在很大程度上未得到表征。通过这项计算机分析揭示的蛋白质还包括一种假定的钾离子通道、与植物和动物来源的水通道蛋白相似的蛋白质、与钠离子-溶质同向转运体相似的蛋白质、一种与神经电阳离子-氯离子共转运体非常相似的蛋白质,以及一种假定的钠离子-氢离子反向转运体。预计将出现一个新的研究领域:对许多通过基因组测序揭示其存在的运输蛋白进行功能分析。

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