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III-A 型 CRISPR-Cas Csm 复合物:组装、周期性 RNA 切割、DNase 活性调节和自身免疫。

Type III-A CRISPR-Cas Csm Complexes: Assembly, Periodic RNA Cleavage, DNase Activity Regulation, and Autoimmunity.

机构信息

Structural Biology Program, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA; Southern University of Science and Technology, Shenzhen, Guangdong 518055, China.

Laboratory of Bacteriology, The Rockefeller University, New York, NY 10065, USA.

出版信息

Mol Cell. 2019 Jan 17;73(2):264-277.e5. doi: 10.1016/j.molcel.2018.11.007. Epub 2018 Nov 29.

Abstract

Type ΙΙΙ CRISPR-Cas systems provide robust immunity against foreign RNA and DNA by sequence-specific RNase and target RNA-activated sequence-nonspecific DNase and RNase activities. We report on cryo-EM structures of Thermococcus onnurineus Csm binary, Csm-target RNA and Csm-target RNA ternary complexes in the 3.1 Å range. The topological features of the crRNA 5'-repeat tag explains the 5'-ruler mechanism for defining target cleavage sites, with accessibility of positions -2 to -5 within the 5'-repeat serving as sensors for avoidance of autoimmunity. The Csm3 thumb elements introduce periodic kinks in the crRNA-target RNA duplex, facilitating cleavage of the target RNA with 6-nt periodicity. Key Glu residues within a Csm1 loop segment of Csm adopt a proposed autoinhibitory conformation suggestive of DNase activity regulation. These structural findings, complemented by mutational studies of key intermolecular contacts, provide insights into Csm complex assembly, mechanisms underlying RNA targeting and site-specific periodic cleavage, regulation of DNase cleavage activity, and autoimmunity suppression.

摘要

Type ΙΙΙ CRISPR-Cas 系统通过序列特异性核糖核酸酶和靶向 RNA 激活的序列非特异性 DNA 酶和核糖核酸酶活性,提供针对外来 RNA 和 DNA 的强大免疫。我们报告了 Thermococcus onnurineus Csm 二元复合物、Csm 靶向 RNA 和 Csm 靶向 RNA 三元复合物在 3.1Å 范围内的冷冻电镜结构。crRNA 5'-重复标签的拓扑特征解释了定义靶切割位点的 5'-标尺机制,5'-重复内位置 -2 到 -5 的可及性作为避免自身免疫的传感器。Csm3 拇指元件在 crRNA-靶向 RNA 双链体中引入周期性扭曲,促进靶向 RNA 的 6-nt 周期性切割。Csm1 环段内的关键 Glu 残基采用一种建议的自动抑制构象,提示 DNA 酶活性调节。这些结构发现,辅以关键分子间接触的突变研究,为 Csm 复合物组装、RNA 靶向和特异性周期性切割的机制、DNA 酶切割活性的调节以及自身免疫抑制提供了深入了解。

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