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大肠杆菌CytR调节因子的DNA结合特性:柔性、无结构的结构域间连接子为操纵子半位点之间提供了宽松的间距要求。

DNA-binding characteristics of the Escherichia coli CytR regulator: a relaxed spacing requirement between operator half-sites is provided by a flexible, unstructured interdomain linker.

作者信息

Jørgensen C I, Kallipolitis B H, Valentin-Hansen P

机构信息

Department of Molecular Biology, Odense University, Odense M, Denmark.

出版信息

Mol Microbiol. 1998 Jan;27(1):41-50. doi: 10.1046/j.1365-2958.1998.00655.x.

Abstract

The Escherichia coli CytR regulator belongs to the LacI family of sequence-specific DNA-binding proteins and prevents CRP-mediated transcription in the CytR regulon. Unlike the other members of this protein family, CytR binds with only modest affinity to its operators and transcription repression thus relies on the formation of nucleoprotein complexes with the cAMP-CRP complex. Moreover, CytR exhibits a rotational and translational flexibility in operator binding that is unprecedented in the LacI family. In this report we examined the effect of changing the spacing between CytR half-operators on CytR regulation in vivo and on CytR binding in vitro. Maximum repression was seen with the short spacing variants: repression peaks when the half-operators lie on the same face of the DNA helix. Repression was retained for most spacing variants with centre separations of half-operators < or = 3 helical turns. Our data confirm and extend the view that CytR is a highly flexible DNA binder that can adapt many different conformations for co-operative binding with CRP. Furthermore, limited proteolysis of radiolabelled CytR protein showed that the interdomain linker connecting the DNA binding domains and the core part of CytR does not become structured upon DNA binding. We conclude that CytR does not use hinge alpha-helices for minor groove recognition. Rather, CytR possesses a highly flexible interdomain linker that allows it to form complexes with CRP at promoters with quite different architecture.

摘要

大肠杆菌CytR调节因子属于序列特异性DNA结合蛋白的LacI家族,可阻止CRP介导的CytR调节子中的转录。与该蛋白家族的其他成员不同,CytR与其操纵子的结合亲和力适中,因此转录抑制依赖于与cAMP-CRP复合物形成核蛋白复合物。此外,CytR在操纵子结合中表现出旋转和平移灵活性,这在LacI家族中是前所未有的。在本报告中,我们研究了改变CytR半操纵子之间的间距对体内CytR调节和体外CytR结合的影响。短间距变体表现出最大抑制作用:当半操纵子位于DNA螺旋的同一面上时,抑制作用达到峰值。对于大多数半操纵子中心间距小于或等于3个螺旋圈的间距变体,抑制作用得以保留。我们的数据证实并扩展了以下观点:CytR是一种高度灵活的DNA结合蛋白,能够适应多种不同构象以与CRP协同结合。此外,对放射性标记的CytR蛋白进行的有限蛋白酶解表明,连接DNA结合结构域和CytR核心部分的结构域间连接子在DNA结合时不会形成结构化。我们得出结论,CytR不使用铰链α螺旋来识别小沟。相反,CytR拥有高度灵活的结构域间连接子,使其能够在结构差异很大的启动子处与CRP形成复合物。

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