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重组I-G型CRISPR-Cas免疫效应复合物对靶DNA的识别与切割

Target DNA recognition and cleavage by a reconstituted Type I-G CRISPR-Cas immune effector complex.

作者信息

Majumdar Sonali, Ligon Marianne, Skinner William Colby, Terns Rebecca M, Terns Michael P

机构信息

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

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

出版信息

Extremophiles. 2017 Jan;21(1):95-107. doi: 10.1007/s00792-016-0871-5. Epub 2016 Aug 31.

Abstract

CRISPR-Cas immune systems defend prokaryotes against viruses and plasmids. CRISPR RNAs (crRNAs) associate with various CRISPR-associated (Cas) protein modules to form structurally and functionally diverse (Type I-VI) crRNP immune effector complexes. Previously, we identified three, co-existing effector complexes in Pyrococcus furiosus -Type I-A (Csa), Type I-G (Cst), and Type III-B (Cmr)-and demonstrated that each complex functions in vivo to eliminate invader DNA. Here, we reconstitute functional Cst crRNP complexes in vitro from recombinant Cas proteins and synthetic crRNAs and investigate mechanisms of crRNP assembly and invader DNA recognition and destruction. All four known Cst-affiliated Cas proteins (Cas5t, Cst1, Cst2, and Cas3) are required for activity, but each subunit plays a distinct role. Cas5t and Cst2 comprise a minimal set of proteins that selectively interact with crRNA. Further addition of Cst1, enables the four subunit crRNP (Cas5t, Cst1, Cst2, crRNA) to specifically bind complementary, double-stranded DNA targets and to recruit the Cas3 effector nuclease, which catalyzes cleavages at specific sites within the displaced, non-target DNA strand. Our results indicate that Type I-G crRNPs selectively bind target DNA in a crRNA and, protospacer adjacent motif dependent manner to recruit a dedicated Cas3 nuclease for invader DNA destruction.

摘要

CRISPR-Cas免疫系统保护原核生物免受病毒和质粒的侵害。CRISPR RNA(crRNA)与各种CRISPR相关(Cas)蛋白模块结合,形成结构和功能多样的(I型至VI型)crRNP免疫效应复合物。此前,我们在嗜热栖热菌中鉴定出三种共存的效应复合物——I型-A(Csa)、I型-G(Cst)和III型-B(Cmr)——并证明每种复合物在体内发挥功能以消除入侵DNA。在此,我们利用重组Cas蛋白和合成crRNA在体外重建功能性Cst crRNP复合物,并研究crRNP组装、入侵DNA识别和破坏的机制。所有四种已知的与Cst相关的Cas蛋白(Cas5t、Cst1、Cst2和Cas3)对于活性都是必需的,但每个亚基发挥着不同的作用。Cas5t和Cst2构成了一组与crRNA选择性相互作用的最小蛋白集。进一步添加Cst1,使四亚基crRNP(Cas5t、Cst1、Cst2、crRNA)能够特异性结合互补的双链DNA靶标,并募集Cas3效应核酸酶,该酶催化在被置换的非靶标DNA链内的特定位点进行切割。我们的结果表明,I型-G crRNP以crRNA和原间隔相邻基序依赖的方式选择性结合靶标DNA,以募集专门的Cas3核酸酶来破坏入侵DNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d90/5404416/71bb518ca543/nihms855216f1.jpg

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