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Mining Host-Pathogen Protein Interactions to Characterize Burkholderia mallei Infectivity Mechanisms

机译:挖掘宿主-病原体蛋白相互作用来表征马氏伯克霍尔德氏菌感染机制

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摘要

Burkholderia pathogenicity relies on protein virulence factors to control and promote bacterial internalization, survival, and replication within eukaryotic host cells. We recently used yeast two-hybrid (Y2H) screening to identify a small set of novel Burkholderia proteins that were shown to attenuate disease progression in an aerosol infection animal model using the virulent Burkholderia mallei ATCC 23344 strain. Here, we performed an extended analysis of primarily nine B. mallei virulence factors and their interactions with human proteins to map out how the bacteria can influence and alter host processes and pathways. Specifically, we employed topological analyses to assess the connectivity patterns of targeted host proteins, identify modules of pathogen-interacting host proteins linked to processes promoting infectivity, and evaluate the effect of crosstalk among the identified host protein modules. Overall, our analysis showed that the targeted host proteins generally had a large number of interacting partners and interacted with other host proteins that were also targeted by B. mallei proteins. We also introduced a novel Host-Pathogen Interaction Alignment (HPIA) algorithm and used it to explore similarities between host-pathogen interactions of B. mallei, Yersinia pestis, and Salmonella enterica. We inferred putative roles of B. mallei proteins based on the roles of their aligned Y. pestis and S. enterica partners and showed that up to 73% of the predicted roles matched existing annotations. A key insight into Burkholderia pathogenicity derived from these analyses of Y2H host-pathogen interactions is the identification of eukaryotic-specific targeted cellular mechanisms, including the ubiquitination degradation system and the use of the focal adhesion pathway as a fulcrum for transmitting mechanical forces and regulatory signals. This provides the mechanisms to modulate and adapt the host-cell environment for the successful establishment of host infections and intracellular spread.
机译:伯克霍尔德氏菌的致病性依靠蛋白质毒力因子来控制和促进真核宿主细胞内细菌的内在化,存活和复制。我们最近使用酵母双杂交(Y2H)筛选来鉴定一小套新颖的伯克霍尔德菌蛋白质,这些蛋白质在使用强毒性伯克霍尔德氏菌ATCC 23344菌株的气溶胶感染动物模型中显示出可减弱疾病进程。在这里,我们进行了主要的九种B. Mallei毒力因子及其与人类蛋白质相互作用的扩展分析,以绘制细菌如何影响和改变宿主过程和途径的图。具体来说,我们采用拓扑分析来评估目标宿主蛋白的连通性模式,确定与促进感染性的过程相关的与病原体相互作用的宿主蛋白的模块,并评估所鉴定宿主蛋白模块之间的串扰影响。总体而言,我们的分析表明,靶向宿主蛋白通常具有大量的相互作用伴侣,并且与也被B. Mallei蛋白靶向的其他宿主蛋白相互作用。我们还介绍了一种新颖的宿主-病原体相互作用比对(HPIA)算法,并用它来探索B. Mallei,鼠疫耶尔森菌和肠炎沙门氏菌的宿主-病原体相互作用之间的相似性。我们根据它们的比对耶尔森氏菌和肠炎沙门氏菌伴侣的作用推断出了B. mallei蛋白的推定作用,并表明多达73%的预测作用与现有注释匹配。从Y2H宿主-病原体相互作用的这些分析得出的伯克霍尔德氏菌致病性的关键见解是真核细胞特异性靶向细胞机制的鉴定,包括泛素降解系统和使用黏着斑途径作为传递机械力和调节信号的支点。这提供了调节和适应宿主细胞环境以成功建立宿主感染和细胞内扩散的机制。

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