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Mycobacterium tuberculosis antigen 85B modifies BCG-induced antituberculosis immunity and favors pathogen survival

结核分枝杆菌 生物 免疫原性 免疫系统 免疫学 免疫 肺结核 微生物学 抗原 FOXP3型 接种疫苗 病毒学 医学 病理
作者
Giovanni Piccaro,Gabriella Aquino,Vincenzo Gigantino,Valentina Tirelli,Massimo Sanchez,Egidio Iorio,Giuseppe Matarese,Antonio Cassone,Carla Palma
出处
期刊:Journal of Leukocyte Biology [Wiley]
卷期号:115 (6): 1053-1069
标识
DOI:10.1093/jleuko/qiae014
摘要

Abstract Tuberculosis is one of the deadliest infectious diseases worldwide. Mycobacterium tuberculosis has developed strategies not only to evade host immunity but also to manipulate it for its survival. We investigated whether Mycobacterium tuberculosis exploited the immunogenicity of Ag85B, one of its major secretory proteins, to redirect host antituberculosis immunity to its advantage. We found that administration of Ag85B protein to mice vaccinated with Bacillus Calmette-Guérin impaired the protection elicited by vaccination, causing a more severe infection when mice were challenged with Mycobacterium tuberculosis. Ag85B administration reduced Bacillus Calmette-Guérin-induced CD4 T-cell activation and IFN-γ, CCL-4, and IL-22 production in response to Mycobacterium tuberculosis–infected cells. On the other hand, it promoted robust Ag85B-responsive IFN-γ–producing CD4 T cells, expansion of a subset of IFN-γ/IL-10–producing CD4+FOXP3+Treg cells, differential activation of IL-17/IL-22 responses, and activation of regulatory and exhaustion pathways, including programmed death ligand 1 expression on macrophages. All this resulted in impaired intracellular Mycobacterium tuberculosis growth control by systemic immunity, both before and after the Mycobacterium tuberculosis challenge. Interestingly, Mycobacterium tuberculosis infection itself generated Ag85B-reactive inflammatory immune cells incapable of clearing Mycobacterium tuberculosis in both unvaccinated and Bacillus Calmette-Guérin–vaccinated mice. Our data suggest that Mycobacterium tuberculosis can exploit the strong immunogenicity of Ag85B to promote its own survival and spread. Since Ag85B is normally secreted by replicating bacteria and is commonly found in the lungs of the Mycobacterium tuberculosis–infected host, our findings may advance the understanding on the mechanisms of Mycobacterium tuberculosis pathogenesis and immune evasion.
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