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Novel Insights into Mycobacterium Antigen Ag85 Biology and Implications in Countermeasures for M. tuberculosis

机译:结核分枝杆菌抗原Ag85生物学的新见解及其在结核分枝杆菌对策中的意义

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Tuberculosis remains one of the most prevalent and deadly infectious diseases, largely due to the emergence of multidrug-resistant and extensive drug-resistant Mycobacterium tuberculosis, especially the coinfection with HIV. Mycobacterium Ag85 complex (Ag85A, B, and C), with a carboxylesterase consensus sequence and conserved surface catalysis residues, involves in cell wall biosynthesis and the trigger of the host immune response. The physiological function, structures, distributions, and molecular mechanisms of regulations as well as their implications in novel vaccines and diagnostics against tuberculosis are summarized. Special focus is the regulation underlying the Ag85 expression. This will facilitate in-depth understanding of the role of Ag85 and developing better novel measures against M. tuberculosis infection.
机译:结核病仍然是最普遍和最致命的传染病之一,很大程度上是由于出现了多药耐药和广泛耐药的结核分枝杆菌,特别是合并感染了艾滋病毒。分枝杆菌Ag85复合物(Ag85A,B和C)具有羧酸酯酶共有序列和保守的表面催化残基,参与细胞壁的生物合成和宿主免疫应答的触发。总结了法规的生理功能,结构,分布和分子机制,以及它们在新型疫苗和结核病诊断中的意义。特别关注的是Ag85表达的基础调控。这将有助于深入了解Ag85的作用,并开发出更好的针对结核分枝杆菌感染的新措施。

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