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Structure and function of the Ts2631 endolysin of Thermus scotoductus phage vB_Tsc2631 with unique N-terminal extension used for peptidoglycan binding

机译:具有独特的N端延伸用于肽聚糖结合的Thermus scotoductus噬菌体vB_Tsc2631的Ts2631内溶素的结构和功能

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To escape from hosts after completing their life cycle, bacteriophages often use endolysins, which degrade bacterial peptidoglycan. While mesophilic phages have been extensively studied, their thermophilic counterparts are not well characterized. Here, we present a detailed analysis of the structure and function of Ts2631 endolysin from thermophilic phage vB_Tsc2631, which is a zinc-dependent amidase. The active site of Ts2631 consists of His30, Tyr58, His131 and Cys139, which are involved in Zn2+ coordination and catalysis. We found that the active site residues are necessary for lysis yet not crucial for peptidoglycan binding. To elucidate residues involved in the enzyme interaction with peptidoglycan, we tested single-residue substitution variants and identified Tyr60 and Lys70 as essential residues. Moreover, substitution of Cys80, abrogating disulfide bridge formation, inactivates Ts2631, as do substitutions of His31, Thr32 and Asn85 residues. The endolysin contains a positively charged N-terminal extension of 20 residues that can protrude from the remainder of the enzyme and is crucial for peptidoglycan binding. We show that the deletion of 20 residues from the N-terminus abolished the bacteriolytic activity of the enzyme. Because Ts2631 exhibits intrinsic antibacterial activity and unusual thermal stability, it is perfectly suited as a scaffold for the development of antimicrobial agents.
机译:为了在完成生命周期后逃脱宿主,噬菌体通常使用内溶素,它们会降解细菌肽聚糖。尽管对嗜温噬菌体进行了广泛研究,但它们的嗜热噬菌体并没有得到很好的表征。在这里,我们介绍了嗜热噬菌体vB_Tsc2631中Ts2631溶血素的结构和功能的详细分析,它是锌依赖性酰胺酶。 Ts2631的活性位点由His30,Tyr58,His131和Cys139组成,它们参与Zn2 +的配位和催化。我们发现,活性位点残基是裂解所必需的,但对肽聚糖的结合并不是至关重要的。为了阐明参与与肽聚糖酶相互作用的残基,我们测试了单残基取代变体,并将Tyr60和Lys70鉴定为必需残基。此外,Cys80的取代消除了二硫键的形成,从而使Ts2631失活,His31,Thr32和Asn85残基的取代也使Ts2631失活。内溶素含有20个残基的正电荷N末端延伸,可从酶的其余部分突出,并且对于肽聚糖的结合至关重要。我们表明,从N-末端删除20个残基消除了酶的溶菌活性。由于Ts2631具有固有的抗菌活性和异常的热稳定性,因此非常适合用作开发抗菌剂的支架。

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