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PAAR蛋白是丰富原核生物抗菌武器库的多功能夹子。

PAAR Proteins Are Versatile Clips That Enrich the Antimicrobial Weapon Arsenals of Prokaryotes.

作者信息

Zhang Zheng, Liu Ya, Zhang Peng, Wang Jianing, Li Dandan, Li Yue-Zhong

机构信息

State Key Laboratory of Microbial Technology, Institute of Microbial Technology, Shandong Universitygrid.27255.37, Qingdao, China.

Suzhou Research Institute, Shandong Universitygrid.27255.37, Suzhou, China.

出版信息

mSystems. 2021 Dec 21;6(6):e0095321. doi: 10.1128/mSystems.00953-21. Epub 2021 Dec 7.

Abstract

Protein toxins secreted by prokaryotes have been found to affect the pathogenicity of pathogens or directly mediate antagonistic interactions between prokaryotes. PAAR proteins are important carriers of toxic effectors and are located at the forefront of either the type VI secretion system (T6SS) or the extracellular contractile injection system (eCIS). This study systematically investigated PAAR homologues and related toxic effectors. We found that PAAR homologues were divided into 8 types and 16 subtypes and distributed in 23.1% of bacterial genomes and 7.8% of archaeal genomes. PAAR proteins of all types fold into a highly similar conical structure, even from relatively diverse underlying sequences. PAAR homologues associated with different secretion systems display a mixed phylogenetic relationship, indicating that PAAR proteins from such a subtype can be assembled on either a T6SS or an eCIS. More than 1,300 PAAR-related toxic effector genes were identified; one PAAR subtype can be associated with toxins of over 40 families, and toxins from one family can be associated with more than 10 PAAR subtypes. A large-scale comparison of Earth Microbiome Project data and prokaryotic genomes revealed that prokaryotes encoding genes are widely present in diverse environments worldwide, and taxa encoding multiple gene copies exhibit a wider distribution in environments than other taxa. Overall, our studies highlighted that PAAR proteins are versatile clips loaded with antimicrobial toxin bullets for secretion weapons (T6SS and eCIS), greatly enriching the weapon arsenal of prokaryotes, which, often together with VgrG, help prokaryotes fight for survival advantages in crowded environments. Infectious diseases caused by microbial pathogens are severe threats to human health and economic development. To respond to these threats, it is necessary to understand how microorganisms survive in and adapt to complex environments. Microorganic toxins, which are widely distributed in nature, are the key weapons in life domain interactions. PAAR proteins are important carriers of prokaryotic toxic effectors. We reveal the versatility of PAAR proteins between secretory systems and the massive diversity of toxic effectors carried by PAAR proteins, which helps prokaryotes enrich their arsenal and expand their ability to attack their neighbors. A large number of PAAR homologues and related toxic effectors enhance the survival competitiveness of prokaryotic populations. In conclusion, our work provides an example for large-scale analysis of the global distribution and ecological functions of prokaryotic functional genes.

摘要

已发现原核生物分泌的蛋白质毒素会影响病原体的致病性,或直接介导原核生物之间的拮抗相互作用。PAAR蛋白是毒性效应物的重要载体,位于VI型分泌系统(T6SS)或细胞外收缩注射系统(eCIS)的前沿。本研究系统地调查了PAAR同源物和相关的毒性效应物。我们发现PAAR同源物分为8种类型和16个亚型,分布在23.1%的细菌基因组和7.8%的古细菌基因组中。所有类型的PAAR蛋白都折叠成高度相似的锥形结构,即使其基础序列相对多样。与不同分泌系统相关的PAAR同源物呈现出混合的系统发育关系,这表明来自该亚型的PAAR蛋白可以组装在T6SS或eCIS上。鉴定出了1300多个与PAAR相关的毒性效应物基因;一种PAAR亚型可以与40多个家族的毒素相关联,而来自一个家族的毒素可以与10多个PAAR亚型相关联。对地球微生物组计划数据和原核生物基因组的大规模比较表明,编码这些基因的原核生物广泛存在于全球各种环境中,编码多个基因拷贝的分类群在环境中的分布比其他分类群更广泛。总体而言,我们的研究强调,PAAR蛋白是装载着抗菌毒素子弹的多功能夹子,用于分泌武器(T6SS和eCIS),极大地丰富了原核生物的武器库,它们通常与VgrG一起,帮助原核生物在拥挤的环境中争夺生存优势。由微生物病原体引起的传染病对人类健康和经济发展构成严重威胁。为应对这些威胁,有必要了解微生物如何在复杂环境中生存和适应。广泛分布于自然界的微生物毒素是生命领域相互作用中的关键武器。PAAR蛋白是原核生物毒性效应物的重要载体。我们揭示了PAAR蛋白在分泌系统之间的多功能性以及PAAR蛋白携带的毒性效应物的大量多样性,这有助于原核生物丰富其武器库并扩大其攻击邻菌的能力。大量的PAAR同源物和相关的毒性效应物增强了原核生物群体的生存竞争力。总之,我们的工作为大规模分析原核生物功能基因的全球分布和生态功能提供了一个范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fd3/8651086/8de67dd833e6/msystems.00953-21-f001.jpg

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