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来自海洋细菌马氏嗜冷杆菌的一种细胞外收缩注射系统的鉴定与结构

Identification and structure of an extracellular contractile injection system from the marine bacterium Algoriphagus machipongonensis.

作者信息

Xu Jingwei, Ericson Charles F, Lien Yun-Wei, Rutaganira Florentine U N, Eisenstein Fabian, Feldmüller Miki, King Nicole, Pilhofer Martin

机构信息

Department of Biology, Institute of Molecular Biology & Biophysics, Eidgenössische Technische Hochschule Zürich, Otto-Stern-Weg 5, Zürich, Switzerland.

Howard Hughes Medical Institute and Department of Molecular and Cell Biology, University of California, Berkeley, CA, USA.

出版信息

Nat Microbiol. 2022 Mar;7(3):397-410. doi: 10.1038/s41564-022-01059-2. Epub 2022 Feb 14.

Abstract

Contractile injection systems (CISs) are phage tail-like nanomachines, mediating bacterial cell-cell interactions as either type VI secretion systems (T6SSs) or extracellular CISs (eCISs). Bioinformatic studies uncovered a phylogenetic group of hundreds of putative CIS gene clusters that are highly diverse and widespread; however, only four systems have been characterized. Here we studied a putative CIS gene cluster in the marine bacterium Algoriphagus machipongonensis. Using an integrative approach, we show that the system is compatible with an eCIS mode of action. Our cryo-electron microscopy structure revealed several features that differ from those seen in other CISs: a 'cap adaptor' located at the distal end, a 'plug' exposed to the tube lumen, and a 'cage' formed by massive extensions of the baseplate. These elements are conserved in other CISs, and our genetic tools identified that they are required for assembly, cargo loading and function. Furthermore, our atomic model highlights specific evolutionary hotspots and will serve as a framework for understanding and re-engineering CISs.

摘要

收缩注射系统(CISs)是噬菌体尾部样纳米机器,作为VI型分泌系统(T6SSs)或细胞外CISs(eCISs)介导细菌细胞间相互作用。生物信息学研究发现了数百个假定的CIS基因簇的一个系统发生组,它们高度多样且广泛存在;然而,只有四个系统得到了表征。在这里,我们研究了海洋细菌马氏嗜冷杆菌中的一个假定的CIS基因簇。通过综合方法,我们表明该系统与eCIS作用模式兼容。我们的冷冻电子显微镜结构揭示了几个与其他CISs不同的特征:位于远端的“帽适配器”、暴露于管腔的“塞子”以及由基板大量延伸形成的“笼”。这些元件在其他CISs中是保守的,我们的遗传工具确定它们是组装、货物装载和功能所必需的。此外,我们的原子模型突出了特定的进化热点,并将作为理解和重新设计CISs的框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8278/8894135/cd611814294f/41564_2022_1059_Fig1_HTML.jpg

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