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An Unbiased Method for Clustering Bacterial Effectors Using Host Cellular Phenotypes

机译:一种使用宿主细胞表型对细菌效应子进行聚类的无偏方法

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摘要

We present a novel method implementing unbiased high-content morphometric cell analysis to classify bacterial effector phenotypes. This clustering methodology represents a significant advance over more qualitative visual approaches and can also be used to classify, and therefore predict the likely function of, unknown effector genes from any microbial genome. As a proof of concept, we use this approach to investigate 23 genetic regions predicted to encode antimacrophage effectors located across the genome of the insect and human pathogen Photorhabdus asymbiotica. Statistical cluster analysis using multiple cellular measures categorized treated macrophage phenotypes into three major groups relating to their putative functionality: (i) adhesins, (ii) cytolethal toxins, and (iii) cytomodulating toxins. Further investigation into their effects on phagocytosis revealed that several effectors also modulate this function and that the nature of this modulation (increased or decreased phagocytosis) is linked to the phenotype cluster group. Categorizing potential functionalities in this way allows rapid functional follow-up of key candidates for more-directed cell biological or biochemical investigation. Such an unbiased approach to the classification of candidate effectors will be useful for describing virulence-related regions in a wide range of genomes and will be useful in assigning putative functions to the growing number of microbial genes whose function remains unclear from homology searching.
机译:我们提出一种新颖的方法来实现无偏的高含量形态细胞分析来对细菌效应子表型进行分类。这种聚类方法代表了较定性视觉方法的重大进步,也可用于分类和预测来自任何微生物基因组的未知效应基因的可能功能。作为概念的证明,我们使用这种方法调查了23个预计编码编码位于昆虫和人类病原体非疫光生细菌基因组上的抗巨噬细胞效应子的遗传区域。使用多种细胞测量方法进行的统计聚类分析将处理过的巨噬细胞表型分为三大类,与它们的假定功能有关:(i)粘附素,(ii)细胞致死性毒素和(iii)细胞调节性毒素。进一步研究其对吞噬作用的影响后发现,几种效应物也可调节该功能,并且这种调节的性质(吞噬作用的增加或减少)与表型簇群有关。通过这种方式对潜在功能进行分类,可以对关键候选对象进行快速功能跟踪,以进行更直接的细胞生物学或生化研究。这种对候选效应子进行分类的无偏方法将有助于描述广泛的基因组中与毒力相关的区域,并将有助于将推定的功能分配给越来越多的微生物基因,这些微生物的功能从同源性搜索中仍不清楚。

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