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Structure-based redesign of lysostaphin yields potent antistaphylococcal enzymes that evade immune cell surveillance

机译:基于结构的溶葡萄球菌素重新设计产生有效的抗葡萄球菌酶可逃避免疫细胞监测

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摘要

Staphylococcus aureus infections exert a tremendous burden on the health-care system, and the threat of drug-resistant strains continues to grow. The bacteriolytic enzyme lysostaphin is a potent antistaphylococcal agent with proven efficacy against both drug-sensitive and drug-resistant strains; however, the enzyme’s own bacterial origins cause undesirable immunogenicity and pose a barrier to clinical translation. Here, we deimmunized lysostaphin using a computationally guided process that optimizes sets of mutations to delete immunogenic T cell epitopes without disrupting protein function. In vitro analyses showed the methods to be both efficient and effective, producing seven different deimmunized designs exhibiting high function and reduced immunogenic potential. Two deimmunized candidates elicited greatly suppressed proliferative responses in splenocytes from humanized mice, while at the same time the variants maintained wild-type efficacy in a staphylococcal pneumonia model. Overall, the deimmunized enzymes represent promising leads in the battle against S. aureus.
机译:金黄色葡萄球菌感染给卫生保健系统带来了沉重负担,并且耐药菌株的威胁继续增加。溶菌酶溶葡萄球菌素是一种有效的抗葡萄球菌药物,已证明对药敏和耐药菌株均有效。但是,这种酶自身的细菌来源会导致不良的免疫原性,并给临床翻译带来障碍。在这里,我们使用计算机引导的过程使溶葡萄球菌素脱免疫,该过程可优化突变集以删除免疫原性T细胞表位而不破坏蛋白质功能。体外分析表明,该方法既有效又有效,可产生七个不同的脱免疫设计,表现出较高的功能和降低的免疫原性。两种去免疫的候选物在人源化小鼠的脾细胞中引起了极大的抑制增殖反应,而同时,这些变体在葡萄球菌性肺炎模型中保持了野生型功效。总的来说,在与金黄色葡萄球菌的斗争中,脱免疫酶代表了有希望的领先者。

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