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New Genome-Wide Algorithm Identifies Novel In-Vivo Expressed Mycobacterium Tuberculosis Antigens Inducing Human T-Cell Responses with Classical and Unconventional Cytokine Profiles

机译:新的全基因组算法识别新型体内表达的结核分枝杆菌抗原,用经典和非常规细胞因子谱诱导人类T细胞反应

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摘要

New strategies are needed to develop better tools to control TB, including identification of novel antigens for vaccination. Such Mtb antigens must be expressed during Mtb infection in the major target organ, the lung, and must be capable of eliciting human immune responses. Using genome-wide transcriptomics of Mtb infected lungs we developed data sets and methods to identify IVE-TB (in-vivo expressed Mtb) antigens expressed in the lung. Quantitative expression analysis of 2,068 Mtb genes from the predicted first operons identified the most upregulated IVE-TB genes during in-vivo pulmonary infection. By further analysing high-level conservation among whole-genome sequenced Mtb-complex strains (n = 219) and algorithms predicting HLA-class-Ia and II presented epitopes, we selected the most promising IVE-TB candidate antigens. Several of these were recognized by T-cells from in-vitro Mtb-PPD and ESAT6/CFP10-positive donors by proliferation and multi-cytokine production. This was validated in an independent cohort of latently Mtb-infected individuals. Significant T-cell responses were observed in the absence of IFN-gamma-production. Collectively, the results underscore the power of our novel antigen discovery approach in identifying Mtb antigens, including those that induce unconventional T-cell responses, which may provide important novel tools for TB vaccination and biomarker profiling. Our generic approach is applicable to other infectious diseases.
机译:需要新的策略来开发更好的控制结核病的工具,包括鉴定用于疫苗接种的新抗原。此类Mtb抗原必须在Mtb感染期间在主要靶器官,肺中表达,并且必须能够引发人的免疫应答。使用Mtb感染的肺的全基因组转录组学,我们开发了数据集和方法来鉴定在肺中表达的IVE-TB(体内表达的Mtb)抗原。预测的第一个操纵子中的2,068个Mtb基因的定量表达分析确定了在体内肺部感染期间最上调的IVE-TB基因。通过进一步分析全基因组测序的Mtb复杂菌株(n = 219)之间的高水平保守性以及预测HLA-Ia和II类抗原决定簇的算法,我们选择了最有希望的IVE-TB候选抗原。其中的一些通过增殖和多细胞因子产生被来自体外Mtb-PPD和ESAT6 / CFP10阳性供体的T细胞所识别。在一个独立的潜在受Mtb感染的人群中进行了验证。在不产生IFN-γ的情况下观察到明显的T细胞应答。总的来说,这些结果强调了我们新颖的抗原发现方法在鉴定Mtb抗原(包括诱导非常规T细胞反应的抗原)中的功能,这可能为TB疫苗接种和生物标志物分析提供重要的新颖工具。我们的通用方法适用于其他传染病。

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