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HP1 Cox的纯化与特性鉴定及其在控制位点特异性重组方向中作用的定义。

Purification and characterization of HP1 Cox and definition of its role in controlling the direction of site-specific recombination.

作者信息

Esposito D, Scocca J J

机构信息

Department of Biochemistry, The Johns Hopkins University School of Hygiene and Public Health, Baltimore, Maryland 21205, USA.

出版信息

J Biol Chem. 1997 Mar 28;272(13):8660-70. doi: 10.1074/jbc.272.13.8660.

Abstract

The protein that activates site-specific excision of the HP1 genome from the Hemophilus influenzae chromosome, HP1 Cox, was purified. Native Cox consists of four 8.9-kDa protomers. Tetrameric Cox self-associates to octamers; the apparent dissociation constant was 8 microM protomer, suggesting that under reaction conditions Cox is largely tetrameric. Cox binding sites consist of two direct repeats of the consensus motif 5'-GGTMAWWWWA; one Cox tetramer binds to each motif. Cox binding interfered with the interaction of HP1 integrase with one of its binding sites, IBS5. This competition is central to directional control, as shown by studies on mutated sites. Both Cox binding sites were necessary for Cox to fully inhibit integration and activate excision, although Cox continued to affect recombination when the single binding site proximal to IBS5 remained intact. Eliminating the IBS5 site completely prevented integration but greatly enhanced excision. Excisive recombination continued to require Cox even when IBS5 was inactivated. Cox must therefore play a positive role in assembling the nucleoprotein complexes producing excisive recombination, by inducing the formation of a critical conformation in those complexes.

摘要

从流感嗜血杆菌染色体中激活HP1基因组位点特异性切除的蛋白质HP1 Cox被纯化出来。天然的Cox由四个8.9 kDa的亚基组成。四聚体Cox会自我缔合形成八聚体;其表观解离常数为8 μM亚基,这表明在反应条件下Cox主要以四聚体形式存在。Cox结合位点由共有基序5'-GGTMAWWWWA的两个直接重复序列组成;一个Cox四聚体与每个基序结合。Cox的结合干扰了HP1整合酶与其一个结合位点IBS5的相互作用。如对突变位点的研究所表明的,这种竞争对于方向控制至关重要。Cox的两个结合位点对于Cox完全抑制整合和激活切除都是必需的,尽管当IBS5近端的单个结合位点保持完整时Cox仍会影响重组。完全消除IBS5位点可完全阻止整合,但会大大增强切除。即使IBS5失活,切除性重组仍继续需要Cox。因此,Cox必定在组装产生切除性重组的核蛋白复合物中发挥积极作用,即通过诱导这些复合物中形成关键构象来实现。

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