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Hin催化的位点特异性DNA倒位协同激活过程中Hin重组酶与Fis调节亚基之间的通讯

Communication between Hin recombinase and Fis regulatory subunits during coordinate activation of Hin-catalyzed site-specific DNA inversion.

作者信息

Merickel S K, Haykinson M J, Johnson R C

机构信息

Department of Biological Chemistry, School of Medicine, University of California at Los Angeles, Los Angeles, California 90095-1737, USA.

出版信息

Genes Dev. 1998 Sep 1;12(17):2803-16. doi: 10.1101/gad.12.17.2803.

Abstract

The Hin DNA invertase becomes catalytically activated when assembled in an invertasome complex containing two Fis dimers bound to an enhancer segment. The region of Fis responsible for transactivation of Hin contains a mobile beta-hairpin arm that extends from each dimer subunit. We show here that whereas both Fis dimers must be capable of activating Hin, Fis heterodimers that have only one functional activating beta-arm are sufficient to form catalytically competent invertasomes. Analysis of homodimer and heterodimer mixes of different Hin mutants suggests that Fis must activate each subunit of the two Hin dimers that participate in catalysis. These experiments also indicate that all four Hin subunits must be coordinately activated prior to initiation of the first chemical step of the reaction and that the process of activation is independent of the catalytic steps of recombination. We propose a molecular model for the invertasome structure that is consistent with current information on protein-DNA structures and the topology of the DNA strands within the recombination complex. In this model, a single Fis activation arm could contact amino acids from both Hin subunits at the dimer interface to induce a conformational change that coordinately positions the active sites close to the scissile phosphodiester bonds.

摘要

当Hin DNA转化酶组装在一个包含与增强子片段结合的两个Fis二聚体的转化体复合物中时,它会被催化激活。Fis负责激活Hin的区域包含一个从每个二聚体亚基延伸出来的可移动β-发夹臂。我们在此表明,虽然两个Fis二聚体都必须能够激活Hin,但只有一个功能性激活β-臂的Fis异二聚体足以形成具有催化活性的转化体。对不同Hin突变体的同二聚体和异二聚体混合物的分析表明,Fis必须激活参与催化的两个Hin二聚体的每个亚基。这些实验还表明,在反应的第一个化学步骤开始之前,所有四个Hin亚基必须被协同激活,并且激活过程与重组的催化步骤无关。我们提出了一个转化体结构的分子模型,该模型与目前关于蛋白质-DNA结构和重组复合物中DNA链拓扑结构的信息一致。在这个模型中,单个Fis激活臂可以在二聚体界面处与两个Hin亚基的氨基酸接触,以诱导构象变化,从而将活性位点协调定位在靠近可切割磷酸二酯键的位置。

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