Cannone Giuseppe, Kompaniiets Dmytro, Graham Shirley, White Malcolm F, Spagnolo Laura
MRC Laboratory of Molecular Biology, Cambridge, CB2 0QH, United Kingdom.
School of Molecular Biosciences, College of Medical Veterinary and Life Sciences, University of Glasgow, Glasgow, UK.
Curr Res Struct Biol. 2023 Feb 10;5:100098. doi: 10.1016/j.crstbi.2023.100098. eCollection 2023.
CRISPR-Cas is a prokaryotic adaptive immune system, classified into six different types, each characterised by a signature protein. Type III systems, classified based on the presence of a Cas10 subunit, are rather diverse multi-subunit assemblies with a range of enzymatic activities and downstream ancillary effectors. The broad array of current biotechnological CRISPR applications is mainly based on proteins classified as Type II, however recent developments established the feasibility and efficacy of multi-protein Type III CRISPR-Cas effector complexes as RNA-targeting tools in eukaryotes. The crenarchaeon has two type III system subtypes (III-B and III-D). Here, we report the cryo-EM structure of the Csm Type III-D complex from (SsoCsm), which uses CRISPR RNA to bind target RNA molecules, activating the Cas10 subunit for antiviral defence. The structure reveals the complex organisation, subunit/subunit connectivity and protein/guide RNA interactions of the SsoCsm complex, one of the largest CRISPR effectors known.
CRISPR-Cas是一种原核生物适应性免疫系统,分为六种不同类型,每种类型都以一种标志性蛋白质为特征。III型系统根据是否存在Cas10亚基进行分类,是相当多样的多亚基组合,具有一系列酶活性和下游辅助效应器。当前广泛的生物技术CRISPR应用主要基于归类为II型的蛋白质,然而最近的进展证实了多蛋白III型CRISPR-Cas效应复合物作为真核生物中RNA靶向工具的可行性和有效性。嗜热栖热菌有两种III型系统亚型(III-B和III-D)。在这里,我们报道了来自嗜热栖热菌(SsoCsm)的Csm III-D复合物的冷冻电镜结构,该复合物利用CRISPR RNA结合靶RNA分子,激活Cas10亚基以进行抗病毒防御。该结构揭示了已知最大的CRISPR效应器之一SsoCsm复合物的复杂组织、亚基/亚基连接性以及蛋白质/引导RNA相互作用。