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由RhaS形成的氨基酸与DNA的相互作用:一种AraC家族转录激活因子。

Amino acid-DNA contacts by RhaS: an AraC family transcription activator.

作者信息

Bhende P M, Egan S M

机构信息

Department of Molecular Biosciences, University of Kansas, Lawrence, Kansas 66045, USA.

出版信息

J Bacteriol. 1999 Sep;181(17):5185-92. doi: 10.1128/JB.181.17.5185-5192.1999.

Abstract

RhaS, an AraC family protein, activates rhaBAD transcription by binding to rhaI, a site consisting of two 17-bp inverted repeat half-sites. In this work, amino acids in RhaS that make base-specific contacts with rhaI were identified. Sequence similarity with AraC suggested that the first contacting motif of RhaS was a helix-turn-helix. Assays of rhaB-lacZ activation by alanine mutants within this potential motif indicated that residues 201, 202, 205, and 206 might contact rhaI. The second motif was identified based on the hypothesis that a region of especially high amino acid similarity between RhaS and RhaR (another AraC family member) might contact the nearly identical DNA sequences in one major groove of their half-sites. We first made targeted, random mutations and then made alanine substitutions within this region of RhaS. Our analysis identified residues 247, 248, 250, 252, 253, and 254 as potentially important for DNA binding. A genetic loss-of-contact approach was used to identify whether any of the RhaS amino acids in the first or second contacting motif make base-specific DNA contacts. In motif 1, we found that Arg202 and Arg206 both make specific contacts with bp -65 and -67 in rhaI1, and that Arg202 contacts -46 and Arg206 contacts -48 in rhaI2. In motif 2, we found that Asp250 and Asn252 both contact the bp -79 in rhaI1. Alignment with the recently crystallized MarA protein suggest that both RhaS motifs are likely helix-turn-helix DNA-binding motifs.

摘要

RhaS是一种AraC家族蛋白,它通过与rhaI结合来激活rhaBAD转录,rhaI是一个由两个17碱基对反向重复半位点组成的位点。在这项研究中,确定了RhaS中与rhaI进行碱基特异性接触的氨基酸。与AraC的序列相似性表明,RhaS的第一个接触基序是一个螺旋-转角-螺旋。对该潜在基序内丙氨酸突变体的rhaB-lacZ激活分析表明,第201、202、205和206位残基可能与rhaI接触。基于RhaS与RhaR(另一个AraC家族成员)之间氨基酸相似性特别高的区域可能在其半位点的一个大沟中与几乎相同的DNA序列接触这一假设,确定了第二个基序。我们首先进行靶向随机突变,然后在RhaS的该区域内进行丙氨酸替换。我们的分析确定第247、248、250、252、253和254位残基对DNA结合可能很重要。采用遗传失接触方法来确定第一个或第二个接触基序中的任何RhaS氨基酸是否进行碱基特异性DNA接触。在基序1中,我们发现Arg202和Arg206都与rhaI1中的-65和-67碱基对进行特异性接触,并且Arg202与rhaI2中的-46碱基对接触,Arg206与rhaI2中的-48碱基对接触。在基序2中,我们发现Asp250和Asn252都与rhaI1中的-79碱基对接触。与最近结晶的MarA蛋白的比对表明,RhaS的两个基序可能都是螺旋-转角-螺旋DNA结合基序。

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