skunavirus进化的远尾蛋白促进了对编码外多糖的乳球菌的吸附。

IF 4 2区 管理学 Q2 MANAGEMENT
Group & Organization Management Pub Date : 2023-07-18 eCollection Date: 2023-01-01 DOI:10.20517/mrr.2023.29
Anne M Millen, Damian Magill, Dennis Romero, Laura Simdon
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引用次数: 1

摘要

目的:乳球菌skunavirus是多种多样的,并且在工业乳制品环境中存在问题。宿主识别涉及噬菌体编码蛋白与糖宿主细胞表面结构的特异性相互作用。乳球菌质粒pEPS6073编码细胞表面相关外多糖(EPS)生物合成所需的基因,称为6073样。本研究评估了EPS对斯库纳病毒敏感性的影响。方法:将pEPS6073偶联转移至两种模型菌株,进行噬菌体斑块试验和吸附试验,观察其对噬菌体敏感性的影响。利用HHpred和AlphaFold建模对噬菌体远端尾部蛋白进行生物信息学分析。通过提供质粒编码模板进行同源重组,构建了携带进化Dits的重组噬菌体。结果:pEPS6073通过吸附抑制对一类skunavirus产生耐药性。感染编码6073样eps基因簇的IFF收集型skunavirus在其远尾蛋白编码(dit)基因中携带插入,导致编码碳水化合物结合结构域的较长dit蛋白(所谓的进化dit)。三种具有经典Dits(无插入)的skunavirus在偶联引入pEPS6073后无法完全感染宿主,显示出吸附和斑块效率的降低。将进化后的Dit克隆到这些噬菌体中,使其对宿主菌株具有完全的感染性,无论是野生型还是转偶联体携带pEPS6073,重组噬菌体对EPS+宿主的吸附能力略好于野生型。结论:6073样EPS可能阻断编码经典Dit蛋白的skunavirus噬菌体受体。感染编码6073样EPS港的毒株的skunavirus进化出Dits,这可能有助于促进噬菌体吸附,而不仅仅是让噬菌体绕过假定的EPS屏障。这项工作进一步加深了我们对乳球菌中噬菌体-宿主相互作用的了解,并提出了在skunavirus子集的Dit蛋白中插入的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evolved distal tail protein of skunaviruses facilitates adsorption to exopolysaccharide-encoding lactococci.

Aim: Lactococcal skunaviruses are diverse and problematic in the industrial dairy environment. Host recognition involves the specific interaction of phage-encoded proteins with saccharidic host cell surface structures. Lactococcal plasmid pEPS6073 encodes genes required for the biosynthesis of a cell surface-associated exopolysaccharide (EPS), designated 6073-like. Here, the impact of this EPS on Skunavirus sensitivity was assessed. Methods: Conjugal transfer of pEPS6073 into two model strains followed by phage plaque assays and adsorption assays were performed to assess its effect on phage sensitivity. Phage distal tail proteins were analyzed bioinformatically using HHpred and modeling with AlphaFold. Construction of recombinant phages carrying evolved Dits was performed by supplying a plasmid-encoded template for homologous recombination. Results: pEPS6073 confers resistance against a subset of skunaviruses via adsorption inhibition. IFF collection skunaviruses that infect strains encoding the 6073-like eps gene cluster carry insertions in their distal tail protein-encoding (dit) genes that result in longer Dit proteins (so-called evolved Dits), which encode carbohydrate-binding domains. Three skunaviruses with classical Dits (no insertion) were unable to fully infect their hosts following the conjugal introduction of pEPS6073, showing reductions in both adsorption and efficiency of plaquing. Cloning the evolved Dit into these phages enabled full infectivity on their host strains, both wild type and transconjugant carrying pEPS6073, with recombinant phages adsorbing slightly better to the EPS+ host than wild type. Conclusion: The 6073-like EPS potentially occludes the phage receptor for skunaviruses that encode a classical Dit protein. Skunaviruses that infect strains encoding the 6073-like EPS harbor evolved Dits, which likely help promote phage adsorption rather than just allow the phage to circumvent the putative EPS barrier. This work furthers our knowledge of phage-host interactions in Lactococcus and proposes a role for insertions in the Dit proteins of a subset of skunaviruses.

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来源期刊
CiteScore
8.40
自引率
12.50%
发文量
71
期刊介绍: Group & Organization Management (GOM) publishes the work of scholars and professionals who extend management and organization theory and address the implications of this for practitioners. Innovation, conceptual sophistication, methodological rigor, and cutting-edge scholarship are the driving principles. Topics include teams, group processes, leadership, organizational behavior, organizational theory, strategic management, organizational communication, gender and diversity, cross-cultural analysis, and organizational development and change, but all articles dealing with individual, group, organizational and/or environmental dimensions are appropriate.
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