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DNA连接酶对切口的识别。

Nick recognition by DNA ligases.

作者信息

Doherty A J, Dafforn T R

机构信息

Structural Medicine Unit Wellcome Trust Centre for the Study of Molecular Mechanisms in Disease Cambridge Institute for Medical Research, and Department of Haematology, University of Cambridge, Hills Rd, Cambridge, CB2 2XY, UK.

出版信息

J Mol Biol. 2000 Feb 11;296(1):43-56. doi: 10.1006/jmbi.1999.3423.

Abstract

Phage T7 DNA ligase seals nicked DNA substrates and is a representative member of the ATP-dependent class of DNA ligases. Although the catalytic mechanism of DNA ligases has been delineated, little is known about the nature of nick recognition by these enzymes. Here, we show that T7 ligase discriminates, at the nick-binding step, between nicks containing either a 5'-phosphate or a 5'-OH. T7 ligase binds preferentially to phosphorylated nicks and catalyses the sealing reaction. We also show using DNA footprinting studies, that T7 ligase binds asymmetrically to nicks as a monomer, with the protein interface covering between 12 and 14 bp of DNA. Based on molecular modelling studies we propose a structural model of the ligase-DNA complex consistent with these and other data. Using photo-crosslinking and site-directed mutagenesis we have identified two residues, K238 and K240, critical for the transadenylation and nick-sealing reactions. Sequence conservation and structural analysis supports the premise that these two lysine residues are critical for both nucleotide binding and DNA nick recognition. The implications of these results on the ligation mechanism are discussed.

摘要

T7噬菌体DNA连接酶可封闭带切口的DNA底物,是ATP依赖性DNA连接酶家族的代表性成员。尽管DNA连接酶的催化机制已被阐明,但对于这些酶识别切口的本质却知之甚少。在此,我们表明T7连接酶在切口结合步骤中,能够区分含有5'-磷酸或5'-羟基的切口。T7连接酶优先结合磷酸化的切口并催化封闭反应。我们还通过DNA足迹研究表明,T7连接酶以单体形式不对称地结合到切口上,蛋白质界面覆盖12至14个碱基对的DNA。基于分子建模研究,我们提出了一个与这些及其他数据一致的连接酶-DNA复合物结构模型。通过光交联和定点诱变,我们确定了两个对转腺苷酸化和切口封闭反应至关重要的残基,即K238和K240。序列保守性和结构分析支持这两个赖氨酸残基对核苷酸结合和DNA切口识别均至关重要的前提。本文讨论了这些结果对连接机制的影响。

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