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创伤弧菌YJ016中I型限制酶假定HsdR亚基的片段结构:对DNA限制和易位活性的影响

The fragment structure of a putative HsdR subunit of a type I restriction enzyme from Vibrio vulnificus YJ016: implications for DNA restriction and translocation activity.

作者信息

Uyen Nguyen To, Park Suk-Youl, Choi Ji-Woo, Lee Hyun-Ju, Nishi Kosuke, Kim Jeong-Sun

机构信息

Interdisciplinary Graduate Program in Molecular Medicine, Gwangju 501-746, Korea.

出版信息

Nucleic Acids Res. 2009 Nov;37(20):6960-9. doi: 10.1093/nar/gkp603. Epub 2009 Jul 22.

Abstract

Among four types of bacterial restriction enzymes that cleave a foreign DNA depending on its methylation status, type I enzymes composed of three subunits are interesting because of their unique DNA cleavage and translocation mechanisms performed by the restriction subunit (HsdR). The elucidated N-terminal fragment structure of a putative HsdR subunit from Vibrio vulnificus YJ016 reveals three globular domains. The nucleolytic core within an N-terminal nuclease domain (NTD) is composed of one basic and three acidic residues, which include a metal-binding site. An ATP hydrolase (ATPase) site at the interface of two RecA-like domains (RDs) is located close to the probable DNA-binding site for translocation, which is far from the NTD nucleolytic core. Comparison of relative domain arrangements with other functionally related ATP and/or DNA complex structures suggests a possible translocation and restriction mechanism of the HsdR subunit. Furthermore, careful analysis of its sequence and structure implies that a linker helix connecting two RDs and an extended region within the nuclease domain may play a central role in switching the DNA translocation into the restriction activity.

摘要

在根据外源DNA甲基化状态切割它的四种细菌限制酶中,由三个亚基组成的I型酶很有趣,因为其限制亚基(HsdR)具有独特的DNA切割和易位机制。对创伤弧菌YJ016推定的HsdR亚基的N端片段结构的解析揭示了三个球状结构域。N端核酸酶结构域(NTD)内的核酸水解核心由一个碱性和三个酸性残基组成,其中包括一个金属结合位点。位于两个RecA样结构域(RDs)界面处的ATP水解酶(ATPase)位点靠近可能用于易位的DNA结合位点,该位点远离NTD核酸水解核心。将相对结构域排列与其他功能相关的ATP和/或DNA复合物结构进行比较,提示了HsdR亚基可能的易位和限制机制。此外,对其序列和结构的仔细分析表明,连接两个RDs的连接螺旋和核酸酶结构域内的延伸区域可能在将DNA易位转换为限制活性中起核心作用。

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