首页> 外文期刊>Journal of Molecular Biology >Crystal structure of the full-length sorbitol operon regulator SorC from Klebsiella pneumoniae: structural evidence for a novel transcriptional regulation mechanism.
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Crystal structure of the full-length sorbitol operon regulator SorC from Klebsiella pneumoniae: structural evidence for a novel transcriptional regulation mechanism.

机译:肺炎克雷伯氏菌的全长山梨糖醇操纵子调节剂SorC的晶体结构:一种新型转录调节机制的结构证据。

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摘要

SorC transcriptional regulators are common regulators in prokaryotes. Here we report the first crystal structure of a full-length SorC, the sorbitol operon regulator SorC from Klebsiella pneumoniae, the prototype of its family. SorC was found to be a homotetramer (which seems to be the biologically active form) that is able to recognize its DNA operator. The tetramer can be regarded as a dimer of dimers, with each dimer being composed of two identical subunits in different conformations. The DNA-binding domains divergently protrude from the core of the tetramer, suggesting that SorC may bind its operator in two distinct regions. The sugar-binding domain presents the same fold identified in members of the SorC family that shows some features identified as specific for sugar recognition. An in silico analysis shows that the localization of the putative sugar-binding site is close to the dimeric interfaces. This supports the proposal of a new mechanism of transcriptional regulation that is in complete agreement with functional studies recently reported on a protein belonging to the same family.
机译:SorC转录调节子是原核生物中常见的调节子。在这里,我们报告了全长SorC的第一个晶体结构,即来自肺炎克雷伯菌的山梨糖醇操纵子调节剂SorC,其家族原型。发现SorC是能够识别其DNA操纵子的同四聚体(似乎是生物活性形式)。可以将四聚体视为二聚体的二聚体,每个二聚体由两个不同构象的相同亚基组成。 DNA结合结构域从四聚体的核心不同地突出,表明SorC可能在两个不同的区域结合其操纵子。糖结合结构域呈现出在SorC家族成员中鉴定出的相同折叠,并显示出某些鉴定为对糖识别具有特异性的特征。计算机分析表明,假定的糖结合位点的定位接近二聚体界面。这支持了新的转录调控机制的提议,该机制与最近报道的属于同一家族的蛋白质的功能研究完全一致。

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