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芽孢杆菌 halodurans 中双链内切酶活性与规律成簇间隔短回文重复序列(CRISPR)相关 Cas2 蛋白。

Double-stranded endonuclease activity in Bacillus halodurans clustered regularly interspaced short palindromic repeats (CRISPR)-associated Cas2 protein.

机构信息

Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York 14853, USA.

出版信息

J Biol Chem. 2012 Oct 19;287(43):35943-52. doi: 10.1074/jbc.M112.382598. Epub 2012 Aug 31.

Abstract

The CRISPR (clustered regularly interspaced short palindromic repeats) system is a prokaryotic RNA-based adaptive immune system against extrachromosomal genetic elements. Cas2 is a universally conserved core CRISPR-associated protein required for the acquisition of new spacers for CRISPR adaptation. It was previously characterized as an endoribonuclease with preference for single-stranded (ss)RNA. Here, we show using crystallography, mutagenesis, and isothermal titration calorimetry that the Bacillus halodurans Cas2 (Bha_Cas2) from the subtype I-C/Dvulg CRISPR instead possesses metal-dependent endonuclease activity against double-stranded (ds)DNA. This activity is consistent with its putative function in producing new spacers for insertion into the 5'-end of the CRISPR locus. Mutagenesis and isothermal titration calorimetry studies revealed that a single divalent metal ion (Mg(2+) or Mn(2+)), coordinated by a symmetric Asp pair in the Bha_Cas2 dimer, is involved in the catalysis. We envision that a pH-dependent conformational change switches Cas2 into a metal-binding competent conformation for catalysis. We further propose that the distinct substrate preferences among Cas2 proteins may be determined by the sequence and structure in the β1-α1 loop.

摘要

CRISPR(成簇规律间隔短回文重复序列)系统是一种原核 RNA 为基础的针对染色体外遗传元件的适应性免疫系统。Cas2 是一种普遍保守的核心 CRISPR 相关蛋白,是 CRISPR 适应获取新间隔区所必需的。它先前被表征为一种对单链 (ss)RNA 具有偏好的内切核酸酶。在这里,我们使用晶体学、突变和等温滴定量热法表明,来自 I-C/Dvulg CRISPR 亚型的芽孢杆菌 halodurans Cas2(Bha_Cas2)实际上具有针对双链 (ds)DNA 的金属依赖性内切核酸酶活性。这种活性与其在产生新的间隔区并插入到 CRISPR 位点 5'端的功能一致。突变和等温滴定量热法研究表明,单个二价金属离子(Mg(2+)或 Mn(2+)),由 Bha_Cas2 二聚体中对称的 Asp 对配位,参与催化。我们设想 pH 依赖性构象变化使 Cas2 切换到金属结合能力的构象以进行催化。我们进一步提出 Cas2 蛋白之间不同的底物偏好可能由β1-α1 环中的序列和结构决定。

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