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通过重组的I-A型免疫效应复合物进行CRISPR RNA引导的DNA切割。

CRISPR RNA-guided DNA cleavage by reconstituted Type I-A immune effector complexes.

作者信息

Majumdar Sonali, Terns Michael P

机构信息

Department of Biochemistry and Molecular Biology, University of Georgia, Athens, GA, 30602, USA.

Department of Genetics, University of Georgia, Athens, GA, 30602, USA.

出版信息

Extremophiles. 2019 Jan;23(1):19-33. doi: 10.1007/s00792-018-1057-0. Epub 2018 Oct 3.

Abstract

Diverse CRISPR-Cas immune systems protect archaea and bacteria from viruses and other mobile genetic elements. All CRISPR-Cas systems ultimately function by sequence-specific destruction of invading complementary nucleic acids. However, each CRISPR system uses compositionally distinct crRNP [CRISPR (cr) RNA/Cas protein] immune effector complexes to recognize and destroy invasive nucleic acids by unique molecular mechanisms. Previously, we found that Type I-A (Csa) effector crRNPs from Pyrococcus furiosus function in vivo to eliminate invader DNA. Here, we reconstituted functional Type I-A effector crRNPs in vitro with recombinant Csa proteins and synthetic crRNA and characterized properties of crRNP assembly, target DNA recognition and cleavage. Six proteins (Csa 4-1, Cas3″, Cas3', Cas5a, Csa2, Csa5) are essential for selective target DNA binding and cleavage. Native gel shift analysis and UV-induced RNA-protein crosslinking demonstrate that Cas5a and Csa2 directly interact with crRNA 5' tag and guide sequences, respectively. Mutational analysis revealed that Cas3″ is the effector nuclease of the complex. Together, our results indicate that DNA cleavage by Type I-A crRNPs requires crRNA-guided and protospacer adjacent motif-dependent target DNA binding to unwind double-stranded DNA and expose single strands for progressive ATP-dependent 3'-5' cleavage catalyzed by integral Cas3' helicase and Cas3″ nuclease crRNP components.

摘要

多种CRISPR-Cas免疫系统保护古细菌和细菌免受病毒及其他可移动遗传元件的侵害。所有CRISPR-Cas系统最终都通过对入侵的互补核酸进行序列特异性破坏来发挥作用。然而,每个CRISPR系统都使用组成不同的crRNP[CRISPR(cr)RNA/Cas蛋白]免疫效应复合物,通过独特的分子机制识别并破坏入侵核酸。此前,我们发现来自激烈热球菌的I-A型(Csa)效应crRNP在体内发挥作用以消除入侵的DNA。在此,我们用重组Csa蛋白和合成crRNA在体外重构了功能性I-A型效应crRNP,并对crRNP组装、靶DNA识别和切割的特性进行了表征。六种蛋白质(Csa 4-1、Cas3″、Cas3'、Cas5a、Csa2、Csa5)对于选择性靶DNA结合和切割至关重要。天然凝胶迁移分析和紫外线诱导的RNA-蛋白质交联表明,Cas5a和Csa2分别与crRNA 5'标签和引导序列直接相互作用。突变分析表明,Cas3″是该复合物的效应核酸酶。我们的结果共同表明,I-A型crRNP进行DNA切割需要crRNA引导且依赖原间隔相邻基序的靶DNA结合,以解开双链DNA并暴露单链,从而由整合的Cas3'解旋酶和Cas3″核酸酶crRNP组分进行逐步的ATP依赖性3'-5'切割。

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