Vaughn J L, Feher V A, Bracken C, Cavanagh J
Department of Chemistry, Purdue University, 1393 Brown Building, West Lafayette, IN 47907, USA.
J Mol Biol. 2001 Jan 19;305(3):429-39. doi: 10.1006/jmbi.2000.4305.
AbrB is a Bacillus subtilis protein responsible for regulating a diverse array of unrelated genes during periods of sub-optimal growth conditions. DNA binding by AbrB is unique in that sequence recognition is specific, yet no obvious consensus sequence of bound promoter regions is apparent. The N-terminal domain is a recently characterized representative of a novel class of DNA-binding proteins that possess a looped-hinge helix DNA-binding topology. Although the structural characterization of this DNA-binding topology contributed to an understanding of the architectural basis for recognition of DNA target sequences, specific mechanisms responsible for promiscuity in DNA sequence recognition still were not apparent. Analysis of (15)N backbone relaxation parameters shows that dynamic motion of regions directly linked to DNA binding show concerted motion on the microsecond-millisecond timescale. Furthermore, dynamic motion of the hinge region suggests that the DNA-binding region is capable of conformational orientations that allow it to accommodate DNA sequence variability in the cognate binding sites.
AbrB是一种枯草芽孢杆菌蛋白,负责在次优生长条件下调节一系列不相关的基因。AbrB与DNA的结合具有独特性,即序列识别具有特异性,但结合的启动子区域没有明显的共有序列。N端结构域是一类新型DNA结合蛋白的最近表征的代表,这类蛋白具有环状铰链螺旋DNA结合拓扑结构。尽管这种DNA结合拓扑结构的结构表征有助于理解识别DNA靶序列的结构基础,但DNA序列识别中导致混杂性的具体机制仍然不明显。对(15)N主链弛豫参数的分析表明,与DNA结合直接相关区域的动态运动在微秒至毫秒时间尺度上呈现协同运动。此外,铰链区的动态运动表明,DNA结合区域能够进行构象取向,使其能够适应同源结合位点中的DNA序列变异性。