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AbrB N 端结构域的修订结构统一了一个多样的假定 DNA 结合蛋白超家族。

Revised structure of the AbrB N-terminal domain unifies a diverse superfamily of putative DNA-binding proteins.

作者信息

Bobay Benjamin G, Andreeva Antonina, Mueller Geoffrey A, Cavanagh John, Murzin Alexey G

机构信息

Department of Molecular and Structural Biochemistry, North Carolina State University, Raleigh, 27695, USA.

出版信息

FEBS Lett. 2005 Oct 24;579(25):5669-74. doi: 10.1016/j.febslet.2005.09.045. Epub 2005 Oct 4.

Abstract

New relationships found in the process of updating the structural classification of proteins (SCOP) database resulted in the revision of the structure of the N-terminal, DNA-binding domain of the transition state regulator AbrB. The dimeric AbrB domain shares a common fold with the addiction antidote MazE and the subunit of uncharacterized protein MraZ implicated in cell division and cell envelope formation. It has a detectable sequence similarity to both MazE and MraZ thus providing an evolutionary link between the two proteins. The putative DNA-binding site of AbrB is found on the same face as the DNA-binding site of MazE and appears similar, both in structure and sequence, to the exposed conserved region of MraZ. This strongly suggests that MraZ also binds DNA and allows for a consensus model of DNA recognition by the members of this novel protein superfamily.

摘要

在更新蛋白质结构分类(SCOP)数据库的过程中发现的新关系,导致了过渡态调节因子AbrB的N端DNA结合结构域结构的修订。二聚体AbrB结构域与成瘾解毒剂MazE以及参与细胞分裂和细胞壁形成的未表征蛋白质MraZ的亚基具有共同的折叠方式。它与MazE和MraZ都具有可检测到的序列相似性,从而在这两种蛋白质之间建立了进化联系。AbrB的假定DNA结合位点与MazE的DNA结合位点位于同一面上,并且在结构和序列上都与MraZ暴露的保守区域相似。这强烈表明MraZ也结合DNA,并为这个新型蛋白质超家族成员识别DNA提供了一个共识模型。

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