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痘病毒Holliday连接体解离酶的四级结构与切割特异性

Quaternary structure and cleavage specificity of a poxvirus holliday junction resolvase.

作者信息

Garcia Alonzo D, Otero Joel, Lebowitz Jacob, Schuck Peter, Moss Bernard

机构信息

Laboratory of Viral Diseases, NIAID, NIH, Bethesda, MD 20892, USA.

出版信息

J Biol Chem. 2006 Apr 28;281(17):11618-26. doi: 10.1074/jbc.M600182200. Epub 2006 Mar 2.

Abstract

Recently, poxviruses were found to encode a protein with signature motifs present in the RuvC family of Holliday junction (HJ) resolvases, which have a key role in homologous recombination in bacteria. The vaccinia virus homolog A22 specifically cleaved synthetic HJ DNA in vitro and was required for the in vivo resolution of viral DNA concatemers into unit-length genomes with hairpin telomeres. It was of interest to further characterize a poxvirus resolvase in view of the low sequence similarity with RuvC, the absence of virus-encoded RuvA and RuvB to interact with, and the different functions of the viral and bacterial resolvases. Because purified A22 aggregated severely, studies were carried out with maltose-binding protein fused to A22 as well as to RuvC. Using gel filtration, chemical cross-linking, analytical ultracentrifugation, and light scattering, we demonstrated that A22 and RuvC are homodimers in solution. Furthermore, the dimeric form of the resolvase associated with HJ DNA, presumably facilitating the symmetrical cleavage of such structures. Like RuvC, A22 symmetrically cleaved fixed HJ junctions as well as junctions allowing strand mobility. Unlike RuvC and other members of the family, however, the poxvirus enzyme exhibited little cleavage sequence specificity. Structural and enzymatic similarities of poxvirus, bacterial, and fungal mitochondrial HJ resolvases are consistent with their predicted evolutionary relationship based on sequence analysis. The absence of a homologous resolvase in mammalian cells makes these microbial enzymes excellent potential therapeutic targets.

摘要

最近,人们发现痘病毒编码一种蛋白质,其具有霍利迪连接体(HJ)解离酶RuvC家族中存在的特征基序,这些基序在细菌的同源重组中起关键作用。痘苗病毒同源物A22在体外能特异性切割合成的HJ DNA,并且是病毒DNA多联体在体内解析为具有发夹端粒的单位长度基因组所必需的。鉴于与RuvC的序列相似性较低、缺乏与之相互作用的病毒编码的RuvA和RuvB以及病毒和解离酶的不同功能,进一步表征痘病毒解离酶很有意义。由于纯化的A22严重聚集,因此对与A22以及RuvC融合的麦芽糖结合蛋白进行了研究。通过凝胶过滤、化学交联、分析超速离心和光散射,我们证明A22和RuvC在溶液中是同型二聚体。此外,解离酶的二聚体形式与HJ DNA结合,大概有助于此类结构的对称切割。与RuvC一样,A22能对称切割固定的HJ连接点以及允许链移动的连接点。然而,与RuvC和该家族的其他成员不同,痘病毒酶几乎没有切割序列特异性。痘病毒、细菌和真菌线粒体HJ解离酶的结构和酶学相似性与基于序列分析预测的进化关系一致。哺乳动物细胞中缺乏同源解离酶使得这些微生物酶成为极具潜力的治疗靶点。

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