首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >A Highly Active and Negatively Charged Streptococcus pyogenes Lysin with a Rare d-Alanyl-l-Alanine Endopeptidase Activity Protects Mice against Streptococcal Bacteremia
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A Highly Active and Negatively Charged Streptococcus pyogenes Lysin with a Rare d-Alanyl-l-Alanine Endopeptidase Activity Protects Mice against Streptococcal Bacteremia

机译:高活性和负电荷的化脓性链球菌溶血素具有罕见的d-丙氨酸-1-丙氨酸内肽酶活性可保护小鼠免受链球菌细菌血症的侵害。

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摘要

Bacteriophage endolysins have shown great efficacy in killing Gram-positive bacteria. PlyC, a group C streptococcal phage lysin, represents the most efficient lysin characterized to date, with a remarkably high specificity against different streptococcal species, including the important pathogen Streptococcus pyogenes. However, PlyC is a unique lysin, in terms of both its high activity and structure (two distinct subunits). We sought to discover and characterize a phage lysin active against S. pyogenes with an endolysin architecture distinct from that of PlyC to determine if it relies on the same mechanism of action as PlyC. In this study, we identified and characterized an endolysin, termed PlyPy (phage lysin from S. pyogenes), from a prophage infecting S. pyogenes. By in silico analysis, PlyPy was found to have a molecular mass of 27.8 kDa and a pI of 4.16. It was active against a majority of group A streptococci and displayed high levels of activity as well as binding specificity against group B and C streptococci, while it was less efficient against other streptococcal species. PlyPy showed the highest activity at neutral pH in the presence of calcium and NaCl. Surprisingly, its activity was not affected by the presence of the group A-specific carbohydrate, while the activity of PlyC was partly inhibited. Additionally, PlyPy was active in vivo and could rescue mice from systemic bacteremia. Finally, we developed a novel method to determine the peptidoglycan bond cleaved by lysins and concluded that PlyPy exhibits a rare d-alanyl-l-alanine endopeptidase activity. PlyPy thus represents the first lysin characterized from Streptococcus pyogenes and has a mechanism of action distinct from that of PlyC.
机译:噬菌体内溶素已显示出杀死革兰氏阳性细菌的巨大功效。 PlyC(C组链球菌噬菌体溶素)代表了迄今为止最有效的溶素,对不同的链球菌种类(包括重要的病原化脓性链球菌)具有很高的特异性。然而,就其高活性和结构(两个不同的亚基)而言,PlyC是独特的溶素。我们试图发现和表征针对化脓性链球菌的噬菌体溶素,其内溶素结构不同于PlyC,以确定其是否依赖与PlyC相同的作用机制。在这项研究中,我们从感染了化脓性链球菌的原噬菌体中鉴定并鉴定了称为PlyPy(来自化脓性链球菌的噬菌体溶素)的内溶素。通过计算机分析,发现PlyPy的分子量为27.8 kDa,pI为4.16。它对大多数A组链球菌具有活性,并显示出高水平的活性以及对B和C组链球菌的结合特异性,而对其他链球菌则效率较低。在钙和氯化钠的存在下,PlyPy在中性pH下显示出最高的活性。令人惊讶地,其活性不受A组特异性碳水化合物的存在的影响,而PlyC的活性被部分抑制。此外,PlyPy在体内具有活性,可以使小鼠免于全身性菌血症。最后,我们开发了一种新的方法来确定被溶素裂解的肽聚糖键,并得出结论,PlyPy具有罕见的d-丙氨酰基-1-丙氨酸内肽酶活性。因此,PlyPy代表了以化脓性链球菌为特征的第一个溶菌素,并具有不同于PlyC的作用机理。

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