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The Escherichia coli ATP-binding cassette (ABC) proteins (see comments)

机译:大肠杆菌ATP结合盒(ABC)蛋白(请参阅评论)

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摘要

The recent completion of the Escherichia coli genome sequence (Blattner et al., 1997) has permitted an analysis of the complement of genomically encoded ATP-binding cassette (ABC) proteins. A total of 79 ABC proteins makes this the largest paralogous family of proteins in E. coli. These 79 proteins include 97 ABC domains (as some proteins include more than one ABC domain) and are components of 69 independent functional systems (as many systems involve more than one ABC domain). The ABC domains are often, but not exclusively, the energy-generating domains of multicomponent membrane-bound transporters. Thus, 57 of the 69 systems are ABC transporters, of which 44 are periplasmic-binding protein-dependent uptake systems and 13 are presumed exporters. The genes encoding these ABC transporters occupy almost 5% of the genome. Of the 12 systems that are not obviously transport related, the function of only one, the excision repair protein UvrA, is known. A phylogenetic analysis suggests that the majority of ABC proteins can be assigned to 10 subfamilies. Together with statistical and, importantly, biological evidence, this analysis provides insight into the evolution and function of the ABC proteins.
机译:大肠杆菌基因组序列的最新完成(Blattner等,1997)已经允许对基因组编码的ATP结合盒(ABC)蛋白的互补序列进行分析。总共79种ABC蛋白质使其成为大肠杆菌中最大的旁系同源蛋白质家族。这79个蛋白质包括97个ABC域(因为某些蛋白质包含不止一个ABC域),并且是69个独立功能系统的组成部分(因为许多系统包含不止一个ABC域)。 ABC结构域通常是(但不限于)多组分膜结合转运蛋白的能量生成结构域。因此,在69个系统中,有57个是ABC转运蛋白,其中44个是周质结合蛋白依赖性吸收系统,而13个是假定的输出蛋白。编码这些ABC转运蛋白的基因几乎占据了基因组的5%。在与运输没有明显关系的12个系统中,只有一个的功能是切除修复蛋白UvrA。系统发育分析表明,大多数ABC蛋白可以分配给10个亚家族。连同统计和重要的生物学证据一起,该分析提供了对ABC蛋白质的进化和功能的见识。

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