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首页> 外文期刊>Acta Biochimica Polonica >The chaperone-usher pathway of bacterial adhesin biogenesis - from molecular mechanism to strategies of anti-bacterial prevention and modem vaccine design
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The chaperone-usher pathway of bacterial adhesin biogenesis - from molecular mechanism to strategies of anti-bacterial prevention and modem vaccine design

机译:细菌粘附素生物合成的伴侣-推动途径-从分子机理到抗菌预防和现代疫苗设计策略

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摘要

The chaperone-usher system determines the biogenesis of surface-exposed adhesive structures responsible for virulence of many Gram-negative bacteria. Investigations of the last 20 years have resolved the mechanism of this pathway on a structural level for different species of pathogenic bacteria. The purpose of this review is to present the molecular mechanisms of the biogenesis of adhesive structures assembled via the chaperone-usher pathway. The obtained mechanistic data allow one to propose potential strategies of anti-bacterial action. Additionally, the specific properties of the polymeric adhesive structures (pili and fimbriae) of the chaperone-usher system allow their use as effective and safe recombinant vaccines carrying foreign epitopes in thousands of copies on bacterial cell surface.
机译:分子伴侣系统决定了导致许多革兰氏阴性细菌致病的表面暴露的粘附结构的生物发生。最近20年的研究已经在结构上针对不同种类的病原细菌解决了该途径的机制。这篇综述的目的是介绍通过伴侣-携带者途径组装的粘附结构的生物发生的分子机制。获得的机械数据使人们可以提出潜在的抗菌作用策略。另外,分子伴侣系统的聚合物粘附结构(菌毛和菌毛)的特定性质允许它们用作有效且安全的重组疫苗,其在细菌细胞表面上携带成千上万的外来抗原决定基。

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