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Arc阻遏蛋白-操纵基因晶体结构中β折叠对DNA的识别

DNA recognition by beta-sheets in the Arc repressor-operator crystal structure.

作者信息

Raumann B E, Rould M A, Pabo C O, Sauer R T

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Nature. 1994 Feb 24;367(6465):754-7. doi: 10.1038/367754a0.

Abstract

Transcription of the ant gene during lytic growth of bacteriophage P22 (ref. 1) is regulated by the cooperative binding of two Arc repressor dimers to a 21-base-pair operator site. Here we report the co-crystal structure of this Arc tetramer-operator complex at 2.6 A resolution. As expected from genetic and structural studies and from the co-crystal structure of the homologous Escherichia coli MetJ repressor, each Arc dimer uses an antiparallel beta-sheet to recognize bases in the major groove. However, the Arc and MetJ complexes differ in several important ways: the beta-sheet-DNA interactions of Arc are far less symmetrical; DNA binding by Arc is accompanied by important conformational changes in the beta-sheet; and Arc uses a different part of its protein surface for dimer-dimer interactions.

摘要

在噬菌体P22的裂解生长过程中,ant基因的转录(参考文献1)受两个Arc阻遏物二聚体与一个21碱基对操纵位点的协同结合调控。在此,我们报告了该Arc四聚体 - 操纵子复合物在2.6埃分辨率下的共晶体结构。正如遗传学和结构研究以及同源大肠杆菌MetJ阻遏物的共晶体结构所预期的那样,每个Arc二聚体利用一个反平行β折叠来识别大沟中的碱基。然而,Arc和MetJ复合物在几个重要方面存在差异:Arc的β折叠 - DNA相互作用远不如前者对称;Arc与DNA的结合伴随着β折叠中的重要构象变化;并且Arc利用其蛋白质表面的不同部分进行二聚体 - 二聚体相互作用。

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