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Tuberculosis susceptibility and vaccine protection are independently controlled by host genotype

机译:结核病易感性和疫苗保护受宿主基因型独立控制

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摘要

The outcome of Mycobacterium tuberculosis infection and the immunological response to the bacillus Calmette-Guerin (BCG) vaccine are highly variable in humans. Deciphering the relative importance of host genetics, environment, and vaccine preparation for the efficacy of BCG has proven difficult in natural populations. We developed a model system that captures the breadth of immunological responses observed in outbred individual mice, which can be used to understand the contribution of host genetics to vaccine efficacy. This system employs a panel of highly diverse inbred mouse strains, consisting of the founders and recombinant progeny of the "Collaborative Cross" project. Unlike natural populations, the structure of this panel allows the serial evaluation of genetically identical individuals and the quantification of genotype-specific effects of interventions such as vaccination. When analyzed in the aggregate, our panel resembled natural populations in several important respects: the animals displayed a broad range of susceptibility to M. tuberculosis, differed in their immunological responses to infection, and were not durably protected by BCG vaccination. However, when analyzed at the genotype level, we found that these phenotypic differences were heritable. M. tuberculosis susceptibility varied between lines, from extreme sensitivity to progressive M. tuberculosis clearance. Similarly, only a minority of the genotypes was protected by vaccination. The efficacy of BCG was genetically separable from susceptibility to M. tuberculosis, and the lack of efficacy in the aggregate analysis was driven by nonresponsive lines that mounted a qualitatively distinct response to infection. These observations support an important role for host genetic diversity in determining BCG efficacy and provide a new resource to rationally develop more broadly efficacious vaccines. IMPORTANCE Tuberculosis (TB) remains an urgent global health crisis, and the efficacy of the currently used TB vaccine, M. bovis BCG, is highly variable. The design of more broadly efficacious vaccines depends on understanding the factors that limit the protection imparted by BCG. While these complex factors are difficult to disentangle in natural populations, we used a model population of mice to understand the role of host genetic composition in BCG efficacy. We found that the ability of BCG to protect mice with different genotypes was remarkably variable. The efficacy of BCG did not depend on the intrinsic susceptibility of the animal but, instead, correlated with qualitative differences in the immune responses to the pathogen. These studies suggest that host genetic polymorphism is a critical determinant of vaccine efficacy and provide a model system to develop interventions that will be useful in genetically diverse populations.
机译:结核分枝杆菌感染的结果和对卡介苗(BCG)疫苗的免疫反应在人类中变化很大。在自然人群中,难以理解宿主遗传学,环境和疫苗制备对于BCG功效的相对重要性。我们开发了一个模型系统,该模型可捕获在远亲个体小鼠中观察到的免疫学反应的广度,该系统可用于了解宿主遗传学对疫苗功效的贡献。该系统采用一组高度多样化的近交小鼠品系,由“ Collaborative Cross”项目的创始人和重组后代组成。与自然种群不同,该面板的结构允许对遗传上相同的个体进行连续评估,并可以量化干预措施(如疫苗接种)的基因型特异性作用。从总体上进行分析时,我们的小组在几个重要方面类似于自然种群:这些动物对结核分枝杆菌表现出广泛的敏感性,对感染的免疫反应也各不相同,并且不受BCG疫苗的持久保护。但是,在基因型水平上分析时,我们发现这些表型差异是可遗传的。品系之间的结核分枝杆菌敏感性从极度敏感性到逐步进行的结核分枝杆菌清除都不同。同样,只有少数基因型受到疫苗接种的保护。 BCG的功效与结核分枝杆菌的易感性在基因上是可分离的,并且聚集分析中功效的缺乏是由无反应系导致的,该系对感染的反应定性不同。这些观察结果支持宿主遗传多样性在确定BCG效力中的重要作用,并为合理开发更广泛有效的疫苗提供了新的资源。重要事项结核病(TB)仍然是紧迫的全球性健康危机,目前使用的结核病疫苗牛分枝杆菌BCG的功效变化很大。更广泛有效的疫苗的设计取决于对限制卡介苗保护的因素的了解。虽然这些复杂因素很难在自然种群中解开,但我们使用模型种群来了解宿主遗传成分在BCG功效中的作用。我们发现BCG保护具有不同基因型的小鼠的能力明显不同。卡介苗的功效并不取决于动物的内在敏感性,而是与对病原体的免疫反应的质性差异相关。这些研究表明,宿主遗传多态性是疫苗效力的关键决定因素,并提供了一个模型系统来开发可用于遗传多样性人群的干预措施。

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