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通过 cryo-EM 和生物化学揭示 III-A 型 CRISPR-Csm 中 ssRNA 切割与 DNase 活性的偶联。

Coupling of ssRNA cleavage with DNase activity in type III-A CRISPR-Csm revealed by cryo-EM and biochemistry.

机构信息

HIT Center for Life Sciences, School of Life Science and Technology, Harbin Institute of Technology, Harbin, Heilongjiang, 150080, China.

Departments of Bioengineering, and of Microbiology and Immunology, and James H. Clark Center, Stanford University, Stanford, CA, 94305, USA.

出版信息

Cell Res. 2019 Apr;29(4):305-312. doi: 10.1038/s41422-019-0151-x. Epub 2019 Feb 27.

Abstract

The type III CRISPR-Cas (clustered regularly interspaced short palindromic repeats-CRISPR-associated genes) systems are bacterially encoded adaptive immune systems for defense against invading nucleic acids. They accomplish this task through the coordinated cleavage of invading substrates of single-stranded RNA and DNA (ssDNA and ssRNA) by the Csm (type III-A) or Cmr (type III-B) effector complexes. The ssRNA is complementarily bound to the CRISPR RNA (crRNA). However, the structural basis for the DNase and RNase activation of the Csm nucleoprotein complex is largely unknown. Here we report cryo-EM structures of the Csm-crRNA complex, with or without target ssRNA, at near-atomic resolution. Our cryo-EM maps allow us to build atomic models of the key macromolecular components, including Cas10, Csm2, Csm3, Csm4, crRNA and the invading ssRNA. Our structure resolves unambiguously the stoichiometry and tertiary structures of the Csm protein complex and the interactions between protein components and the crRNA/ssRNA. Interestingly, the new atomic structures of the Csm proteins presented here are similar to those of previously known Csm proteins in other species despite their low sequence similarity. Our combined structural and biochemical data suggest that ssRNA cleavage is preferentially carried out near its 5'-end, that the extent of interactions among the ssRNA, crRNA and the protein components regulates the DNase activity of the Csm complex, and that the 3' flanking sequence of ssRNA activates the Cas10 DNase activity allosterically.

摘要

III 型 CRISPR-Cas(规律成簇间隔短回文重复序列-CRISPR 相关基因)系统是细菌编码的适应性免疫防御系统,用于抵御入侵的核酸。它们通过 Csm(III-A 型)或 Cmr(III-B 型)效应复合物对单链 RNA 和 DNA(ssDNA 和 ssRNA)的入侵底物进行协调切割来完成此任务。ssRNA 与 CRISPR RNA(crRNA)互补结合。然而,Csm 核蛋白复合物的 DNase 和 RNase 激活的结构基础在很大程度上仍是未知的。在这里,我们报告了 Csm-crRNA 复合物的冷冻电镜结构,无论是有还是没有靶 ssRNA,分辨率都接近原子水平。我们的冷冻电镜图谱使我们能够构建关键大分子组件的原子模型,包括 Cas10、Csm2、Csm3、Csm4、crRNA 和入侵的 ssRNA。我们的结构明确解析了 Csm 蛋白复合物的化学计量和三级结构,以及蛋白成分与 crRNA/ssRNA 之间的相互作用。有趣的是,尽管序列相似性较低,但这里呈现的 Csm 蛋白的新原子结构与其他物种中已知的 Csm 蛋白相似。我们的综合结构和生化数据表明,ssRNA 的切割更倾向于在其 5'-端进行,ssRNA、crRNA 和蛋白成分之间的相互作用程度调节 Csm 复合物的 DNase 活性,并且 ssRNA 的 3'侧翼序列通过别构激活 Cas10 的 DNase 活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/550d/6461802/6607aca7b7e1/41422_2019_151_Fig1_HTML.jpg

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