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来自红螺菌的一氧化碳响应性转录激活因子的特性分析。

Characterization of a CO-responsive transcriptional activator from Rhodospirillum rubrum.

作者信息

He Y, Shelver D, Kerby R L, Roberts G P

机构信息

Department of Bacteriology, University of Wisconsin, Madison 53706, USA.

出版信息

J Biol Chem. 1996 Jan 5;271(1):120-3. doi: 10.1074/jbc.271.1.120.

Abstract

In Rhodospirillum rubrum, CO induces the expression of at least two transcripts that encode an enzyme system for CO oxidation. This regulon is positively regulated by CooA, which is a member of the cAMP receptor protein family of transcriptional regulators. The transcriptional start site of one of the transcripts (cooFSCTJ) has been identified by primer extension. The ability of CooA to bind to this promoter in vitro was characterized with DNase I footprinting experiments using extracts of a CooA-overproducing strain. CooA- and CO-dependent protection was observed for a region with 2-fold symmetry (5'-TGTCA-N6-CGACA) that is highly similar to the consensus core motifs recognized by cAMP receptor protein/FNR family. In vivo analysis in a heterologous background indicates that CooA is sufficient for CO-dependent expression, implicating it as the likely CO sensor.

摘要

在深红红螺菌中,一氧化碳诱导至少两种转录本的表达,这些转录本编码一种用于一氧化碳氧化的酶系统。这个调节子由CooA正向调控,CooA是转录调节因子的cAMP受体蛋白家族的成员。其中一个转录本(cooFSCTJ)的转录起始位点已通过引物延伸法确定。使用过量表达CooA菌株的提取物,通过DNase I足迹实验对CooA在体外与该启动子结合的能力进行了表征。在一个具有2倍对称性的区域(5'-TGTCA-N6-CGACA)观察到了CooA和一氧化碳依赖性保护,该区域与cAMP受体蛋白/FNR家族识别的共有核心基序高度相似。在异源背景下的体内分析表明,CooA足以实现一氧化碳依赖性表达,这表明它可能是一氧化碳传感器。

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