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The Miller Hypothesis

机译:米勒假设

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摘要

The immune response is a cornerstone in the body's struggle against microbial pathogens. In ways that we do not yet completely understand, the mammalian immune response has evolved to identify proteins of pathogens that are either important virulence factors or key immunoprotective targets. Professor James N. Miller suggested that one way to discover such proteins is to harness the power of the immune system in the laboratory. This general concept, referred to here as the Miller Hypothesis, took several different manifestations in the discovery of some of the best known and widely studied leptospiral proteins: The porin OmpLl was identified by surface immunoprecipitation, leptospiral immunoglobulin-like proteins were uncovered by screening a genomic library with sera from leptospirosis patients, and the major outer-membrane lipoprotein LipL32 was recognized through immunoblot studies. Such approaches will continue to bear fruit for both the leptospiral research field and research on other invasive pathogens.
机译:免疫反应是人体与微生物病原体斗争的基石。以我们尚未完全理解的方式,哺乳动物的免疫反应已经演变为鉴定病原体的蛋白质,这些病原体是重要的毒力因素或关键的免疫保护靶标。詹姆斯·N·米勒(James N. Miller)教授建议,发现这种蛋白质的一种方法是利用实验室中的免疫系统的力量。这个一般概念在这里被称为米勒假设,在发现一些最著名且经过广泛研究的钩端螺旋体蛋白时采用了几种不同的表现:通过筛选lypsonoprepipitation,通过表面免疫沉淀鉴定了Porin Ompll,通过筛选瘦螺旋藻样蛋白质,通过筛查limpopiral primunogoblobobloblobloblobloblobloblobloblobloblobloblobloblobloblobloblobloblobloblobloblobloblik蛋白来筛选。通过免疫印迹研究识别出具有钩端螺旋体病的血清的基因组文库,以及主要的外膜脂蛋白LIPL32。这种方法将继续为钩端螺旋体研究领域和其他侵入性病原体的研究带来成果。

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