宏基因组筛选揭示了人类和环境微生物群中多样的抗噬菌体防御机制。

Metagenomic selections reveal diverse antiphage defenses in human and environmental microbiomes.

作者信息

Rodriguez-Rodriguez Luis, Pfister James, Schuck Liam, Martin Arabella E, Mercado-Santiago Luis M, Tagliabracci Vincent S, Forsberg Kevin J

机构信息

Department of Microbiology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

出版信息

Cell Host Microbe. 2025 Jul 20. doi: 10.1016/j.chom.2025.07.005.

Abstract

To prevent phage infection, bacteria have developed an arsenal of antiphage defenses. Evidence suggests that many examples in nature have not been described. Using plasmid libraries expressing small DNA inserts and functional selections for antiphage defense in Escherichia coli, we identified over 200 putative defenses from 14 bacterial phyla in 9 human and soil microbiomes. Many defenses were unrecognizable based on sequence or predicted structure and thus could only be identified via functional assays. In mechanistic studies, we show that some defenses encode nucleases that distinguish phage DNA via diverse chemical modifications. We also identify outer membrane proteins that prevent phage adsorption and a set of unknown defenses with diverse antiphage profiles and modalities. Most defenses acted against at least two phages, indicating that broadly acting systems are widely distributed. Collectively, these findings highlight the diversity and interoperability of antiphage defense systems.

摘要

为防止噬菌体感染,细菌已进化出一系列抗噬菌体防御机制。有证据表明,自然界中的许多此类例子尚未被描述。我们利用表达小DNA插入片段的质粒文库以及在大肠杆菌中针对抗噬菌体防御的功能筛选,从9个人类和土壤微生物群落的14个细菌门中鉴定出200多种假定的防御机制。基于序列或预测结构,许多防御机制无法识别,因此只能通过功能测定来鉴定。在机理研究中,我们表明一些防御机制编码通过多种化学修饰来区分噬菌体DNA的核酸酶。我们还鉴定出了防止噬菌体吸附的外膜蛋白以及一组具有不同抗噬菌体谱和作用方式的未知防御机制。大多数防御机制至少对两种噬菌体起作用,这表明广泛作用的系统广泛分布。这些发现共同凸显了抗噬菌体防御系统的多样性和互操作性。

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