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I-CreI LAGLIDADG归巢内切酶的金属依赖性DNA切割机制。

Metal-dependent DNA cleavage mechanism of the I-CreI LAGLIDADG homing endonuclease.

作者信息

Chevalier Brett, Sussman Django, Otis Christian, Noël Ann-Josée, Turmel Monique, Lemieux Claude, Stephens Kathy, Monnat Raymond J, Stoddard Barry L

机构信息

Graduate Program in Molecular and Cellular Biology, University of Washington and Fred Hutchinson Cancer Research Center, 1100 Fairview Avenue North A3-025, Seattle, Washington 98109, USA.

出版信息

Biochemistry. 2004 Nov 9;43(44):14015-26. doi: 10.1021/bi048970c.

Abstract

The LAGLIDADG homing endonucleases include free-standing homodimers, pseudosymmetric monomers, and related enzyme domains embedded within inteins. DNA-bound structures of homodimeric I-CreI and monomeric I-SceI indicate that three catalytic divalent metal ions are distributed across a pair of overlapping active sites, with one shared metal participating in both strand cleavage reactions. These structures differ in the precise position and binding interactions of the metals. We have studied the metal dependence for the I-CreI homodimer using site-directed mutagenesis of active site residues and assays of binding affinity and cleavage activity. We have also reassessed the binding of a nonactivating metal ion (calcium) in the wild-type enzyme-substrate complex, and determined the DNA-bound structure of two inactive enzyme mutants. The conclusion of these studies is that the catalytic mechanism of symmetric LAGLIDADG homing endonucleases, and probably many of their monomeric cousins, involves a canonical two-metal mechanism in each of two active sites, which are chemically and structurally tethered to one another by a shared metal ion. Failure to occupy the shared metal site, as observed in the presence of calcium or when the metal-binding side chain from the LAGLIDADG motif (Asp 20) is mutated to asparagine, prevents cleavage by the enzyme.

摘要

LAGLIDADG归巢内切酶包括独立的同源二聚体、假对称单体以及内含肽中嵌入的相关酶结构域。同源二聚体I-CreI和单体I-SceI与DNA结合的结构表明,三个催化性二价金属离子分布在一对重叠的活性位点上,其中一个共享金属参与两条链的切割反应。这些结构在金属的精确位置和结合相互作用方面存在差异。我们利用活性位点残基的定点诱变以及结合亲和力和切割活性测定,研究了I-CreI同源二聚体对金属的依赖性。我们还重新评估了野生型酶-底物复合物中一种非活化金属离子(钙)的结合情况,并确定了两个无活性酶突变体与DNA结合的结构。这些研究的结论是,对称的LAGLIDADG归巢内切酶及其许多单体同类物的催化机制,在两个活性位点中的每一个都涉及一种典型的双金属机制,这两个活性位点通过一个共享金属离子在化学和结构上相互连接。如在存在钙的情况下或当LAGLIDADG基序中的金属结合侧链(Asp 20)突变为天冬酰胺时所观察到的,未能占据共享金属位点会阻止该酶的切割。

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