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Hin介导的DNA倒位中间体:Fis和重组增强子在链交换反应中的作用。

Intermediates in Hin-mediated DNA inversion: a role for Fis and the recombinational enhancer in the strand exchange reaction.

作者信息

Johnson R C, Bruist M F

机构信息

Department of Biological Chemistry, UCLA School of Medicine 90024-1737.

出版信息

EMBO J. 1989 May;8(5):1581-90. doi: 10.1002/j.1460-2075.1989.tb03542.x.

Abstract

The site-specific inversion reaction controlling flagellin synthesis in Salmonella involves the function of three proteins: Hin, Fis and HU. The DNA substrate must be supercoiled and contain a recombinational enhancer sequence in addition to the two recombination sites. Using mutant substrates or modified reaction conditions, large amounts of complexes can be generated which are recognized by double-stranded breaks within both recombination sites upon quenching. The cleaved molecules contain 2-bp staggered cuts within the central dinucleotide of the recombination site. Hin is covalently associated with the 5' end while the protruding 3' end contains a free hydoxyl. We demonstrate that complexes generated in the presence of an active enhancer are intermediates that have advanced past the major rate limiting step(s) of the reaction. In the absence of a functional enhancer, Hin is also able to assemble and catalyze site-specific cleavages within the two recombination sites. However, these complexes are kinetically distinct from the complexes assembled with a functional enhancer and cannot generate inversion without an active enhancer. The results suggest that strand exchange leading to inversion is mediated by double-stranded cleavage of DNA at both recombination sites followed by the rotation of strands to position the DNA into the recombinant configuration. The role of the enhancer and DNA supercoiling in these reactions is discussed.

摘要

沙门氏菌中控制鞭毛蛋白合成的位点特异性倒位反应涉及三种蛋白质的功能

Hin、Fis和HU。DNA底物必须是超螺旋的,并且除了两个重组位点外还包含一个重组增强子序列。使用突变底物或改变反应条件,可以产生大量的复合物,在淬灭时,这些复合物可被两个重组位点内的双链断裂识别。切割后的分子在重组位点的中央二核苷酸内含有2个碱基对的交错切口。Hin与5'端共价结合,而突出的3'端含有一个游离羟基。我们证明,在活性增强子存在下产生的复合物是已经越过反应主要限速步骤的中间体。在没有功能性增强子的情况下,Hin也能够在两个重组位点内组装并催化位点特异性切割。然而,这些复合物在动力学上与用功能性增强子组装的复合物不同,并且在没有活性增强子的情况下不能产生倒位。结果表明,导致倒位的链交换是由两个重组位点处的DNA双链切割介导的,随后链旋转以将DNA定位到重组构型中。讨论了增强子和DNA超螺旋在这些反应中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09c3/400990/4ca71092b38b/emboj00129-0283-a.jpg

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