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Conserved and Diverse Traits of Adhesion Devices from Siphoviridae Recognizing Proteinaceous or Saccharidic Receptors

机译:Siphoviridae识别蛋白质或糖受体的粘附装置的保守和多样化特征

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摘要

Bacteriophages can play beneficial roles in phage therapy and destruction of food pathogens. Conversely, they play negative roles as they infect bacteria involved in fermentation, resulting in serious industrial losses. phages possess a long non-contractile tail and use a mechanism of infection whose first step is host recognition and binding. They have evolved adhesion devices at their tails’ distal end, tuned to recognize specific proteinaceous or saccharidic receptors on the host’s surface that span a large spectrum of shapes. In this review, we aimed to identify common patterns beyond this apparent diversity. To this end, we analyzed siphophage tail tips or baseplates, evaluating their known structures, where available, and uncovering patterns with bioinformatics tools when they were not. It was thereby identified that a triad formed by three proteins in complex, i.e., the tape measure protein (TMP), the distal tail protein (Dit), and the tail-associated lysozyme (Tal), is conserved in all phages. This common scaffold may harbor various functional extensions internally while it also serves as a platform for plug-in ancillary or receptor-binding proteins (RBPs). Finally, a group of siphophage baseplates involved in saccharidic receptor recognition exhibits an activation mechanism reminiscent of that observed in .
机译:噬菌体可在噬菌体治疗和食物病原体破坏中发挥有益作用。相反,它们在感染与发酵有关的细菌时起负面作用,导致严重的工业损失。噬菌体具有长的非收缩性尾巴,并使用一种感染机制,其第一步是宿主识别和结合。他们在尾巴的末端发展了粘附装置,经过调整可以识别宿主表面上各种形状的特定蛋白质或糖化受体。在这篇评论中,我们旨在确定这种明显多样性以外的常见模式。为此,我们分析了噬菌体尾端或底板,评估了它们的已知结构(如果有),并在没有生物信息学工具时发现了模式。从而确定了由三种复合蛋白质组成的三联体,即卷尺蛋白质(TMP),末端尾部蛋白质(Dit)和与尾部相关的溶菌酶(Tal),在所有噬菌体中都是保守的。这种常见的支架可能在内部包含各种功能扩展,同时还充当插入式辅助或受体结合蛋白(RBP)的平台。最后,一组参与糖化受体识别的噬菌体底板表现出的激活机制让人联想到。

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