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链特异性接触和二价金属离子通过GIY-YIG归巢内切酶I-BmoI调节双链断裂的形成。

Strand-specific contacts and divalent metal ion regulate double-strand break formation by the GIY-YIG homing endonuclease I-BmoI.

作者信息

Carter Jonathan M, Friedrich Nancy C, Kleinstiver Benjamin, Edgell David R

机构信息

Department of Biochemistry, Schulich School of Medicine and Dentistry, The University of Western Ontario, London, ON, Canada.

出版信息

J Mol Biol. 2007 Nov 23;374(2):306-21. doi: 10.1016/j.jmb.2007.09.027. Epub 2007 Sep 16.

Abstract

GIY-YIG homing endonucleases are modular enzymes consisting of a well-defined N-terminal catalytic domain connected to a variable C-terminal DNA-binding domain. Previous studies have revealed that the role of the DNA-binding domain is to recognize and bind intronless DNA substrate, positioning the N-terminal catalytic domain such that it is poised to generate a staggered double-strand break by an unknown mechanism. Interactions of the N-terminal catalytic domain with intronless substrate are therefore a critical step in the reaction pathway but have been difficult to define. Here, we have taken advantage of the reduced activity of I-BmoI, an isoschizomer of the well-studied bacteriophage T4 homing endonuclease I-TevI, to examine double-strand break formation by I-BmoI. We present evidence demonstrating that I-BmoI generates a double-strand break by two sequential but chemically independent nicking reactions where divalent metal ion is a limiting factor in top-strand nicking. We also show by in-gel footprinting that contacts by the I-BmoI catalytic domain induce significant minor groove DNA distortions that occur independently of bottom-strand nicking. Bottom-strand contacts are critical for accurate top-strand nicking, whereas top-strand contacts have little influence on the accuracy of bottom-strand nicking. We discuss our results in the context of current models of GIY-YIG endonuclease function, with emphasis on the role of divalent metal ion and strand-specific contacts in regulating the activity of a single active site to generate a staggered double-strand break.

摘要

GIY-YIG归巢内切酶是模块化酶,由一个定义明确的N端催化结构域与一个可变的C端DNA结合结构域相连组成。先前的研究表明,DNA结合结构域的作用是识别并结合无内含子的DNA底物,将N端催化结构域定位,使其准备通过未知机制产生交错双链断裂。因此,N端催化结构域与无内含子底物的相互作用是反应途径中的关键步骤,但一直难以确定。在这里,我们利用了I-BmoI(一种经过充分研究的噬菌体T4归巢内切酶I-TevI的同裂酶)活性降低的特点,来研究I-BmoI形成双链断裂的情况。我们提供的证据表明,I-BmoI通过两个连续但化学上独立的切口反应产生双链断裂,其中二价金属离子是顶链切口的限制因素。我们还通过凝胶内足迹法表明,I-BmoI催化结构域的接触会诱导显著的小沟DNA扭曲,这种扭曲独立于底链切口发生。底链接触对于准确的顶链切口至关重要,而顶链接触对底链切口的准确性影响很小。我们在GIY-YIG内切酶功能的当前模型背景下讨论我们的结果,重点是二价金属离子和链特异性接触在调节单个活性位点活性以产生交错双链断裂中的作用。

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