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首页> 外文期刊>The Journal of Infectious Diseases >Host cell-induced components of the sulfate assimilation pathway are major protective antigens of Mycobacterium tuberculosis.
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Host cell-induced components of the sulfate assimilation pathway are major protective antigens of Mycobacterium tuberculosis.

机译:宿主细胞诱导的硫酸盐同化途径的成分是结核分枝杆菌的主要保护性抗原。

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摘要

New therapies to control tuberculosis are urgently required because of the inability of the only available vaccine, BCG, to adequately protect against tuberculosis. Here we demonstrate that proteins of the Mycobacterium tuberculosis sulfate-assimilation pathway (SAP) represent major immunogenic targets of the bacillus, as defined by strong T-cell recognition by both mice and humans infected with M. tuberculosis. SAP proteins displayed increased expression when M. tuberculosis was resident within host cells, which may account in part for their ability to stimulate anti-M. tuberculosis host immunity. Vaccination with the first enzyme in this pathway, adenosine-5'-triphosphate sulfurylase, conferred significant protection against murine tuberculosis and boosted BCG-induced protective immunity in the lung. Therefore, we have identified SAP components as a new family of M. tuberculosis antigens, and we have demonstrated that these components are promising candidate for inclusion in new vaccines to control tuberculosis in humans.
机译:由于唯一可用的疫苗BCG无法充分预防结核病,因此迫切需要控制结核的新疗法。在这里,我们证明了结核分枝杆菌硫酸同化途径(SAP)的蛋白质代表了细菌的主要免疫原性靶标,这是由小鼠和受结核分枝杆菌感染的人对T细胞的强烈识别所定义的。当结核分枝杆菌位于宿主细胞内时,SAP蛋白显示出增加的表达,这可能部分解释了它们刺激抗M的能力。结核病宿主免疫力。用该途径中的第一种酶(腺苷5'-三磷酸硫醚化酶)进行疫苗接种可显着保护鼠类肺结核,并增强BCG诱导的肺部保护性免疫力。因此,我们已经将SAP成分鉴定为结核分枝杆菌抗原的新家族,并且我们证明了这些成分有望被纳入控制人类结核病的新疫苗中。

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