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基因组分析揭示的新型转运蛋白家族的系统发育特征

Phylogenetic characterization of novel transport protein families revealed by genome analyses.

作者信息

Saier M H, Eng B H, Fard S, Garg J, Haggerty D A, Hutchinson W J, Jack D L, Lai E C, Liu H J, Nusinew D P, Omar A M, Pao S S, Paulsen I T, Quan J A, Sliwinski M, Tseng T T, Wachi S, Young G B

机构信息

Department of Biology, University of California at San Diego, La Jolla, CA 92093-0116, USA.

出版信息

Biochim Biophys Acta. 1999 Feb 25;1422(1):1-56. doi: 10.1016/s0304-4157(98)00023-9.

Abstract

As a result of recent genome sequencing projects as well as detailed biochemical, molecular genetic and physiological experimentation on representative transport proteins, we have come to realize that all organisms possess an extensive but limited array of transport protein types that allow the uptake of nutrients and excretion of toxic substances. These proteins fall into phylogenetic families that presumably reflect their evolutionary histories. Some of these families are restricted to a single phylogenetic group of organisms and may have arisen recently in evolutionary time while others are found ubiquitously and may be ancient. In this study we conduct systematic phylogenetic analyses of 26 families of transport systems that either had not been characterized previously or were in need of updating. Among the families analyzed are some that are bacterial-specific, others that are eukaryotic-specific, and others that are ubiquitous. They can function by either a channel-type or a carrier-type mechanism, and in the latter case, they are frequently energized by coupling solute transport to the flux of an ion down its electrochemical gradient. We tabulate the currently sequenced members of the 26 families analyzed, describe the properties of these families, and present partial multiple alignments, signature sequences and phylogenetic trees for them all.

摘要

由于近期的基因组测序项目以及对代表性转运蛋白进行的详细生化、分子遗传和生理学实验,我们逐渐认识到,所有生物体都拥有一系列广泛但有限的转运蛋白类型,这些转运蛋白能够摄取营养物质并排出有毒物质。这些蛋白质属于不同的系统发育家族,大概反映了它们的进化历史。其中一些家族仅限于单一的生物系统发育群体,可能是在进化过程中近期出现的,而其他家族则普遍存在,可能较为古老。在本研究中,我们对26个此前未被表征或需要更新的转运系统家族进行了系统的系统发育分析。在所分析的家族中,有些是细菌特有的,有些是真核生物特有的,还有一些是普遍存在的。它们可以通过通道型或载体型机制发挥作用,在后一种情况下,它们通常通过将溶质转运与离子沿其电化学梯度的流动相偶联来获取能量。我们列出了所分析的26个家族目前已测序的成员,描述了这些家族的特性,并给出了它们所有的部分多重比对、特征序列和系统发育树。

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