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首页> 外文期刊>Pathogens and disease[electronic] >Delineating infection strategies of Leishmania donovani secretory proteins in Human through host-pathogen protein Interactome prediction
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Delineating infection strategies of Leishmania donovani secretory proteins in Human through host-pathogen protein Interactome prediction

机译:描述感染利什曼虫的策略人类通过donovani分泌蛋白host-pathogen蛋白质Interactome预测

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摘要

Interactions of Leishmania donovani secretory virulence factors with the host proteins and their interplay during the infection process in humans is poorly studied in Visceral Leishmaniasis. Lack of a holistic study of pathway level de-regulations caused due to these virulence factors leads to a poor understanding of the parasite strategies to subvert the host immune responses, secure its survival inside the host and further the spread of infection to the visceral organs. In this study, we propose a computational workflow to predict host-pathogen protein interactome of L.donovani secretory virulence factors with human proteins combining sequence-based Interolog mapping and structure-based Domain Interaction mapping techniques. We further employ graph theoretical approaches and shortest path methods to analyze the interactome. Our study deciphers the infection paths involving some unique and understudied disease-associated signaling pathways influencing the cellular phenotypic responses in the host. Our statistical analysis based in silico knockout study unveils for the first time UBC, 1433Z and HS90A mediator proteins as potential immunomodulatory candidates through which the virulence factors employ the infection paths. These identified pathways and novel mediator proteins can be effectively used as possible targets to control and modulate the infection process further aiding in the treatment of Visceral Leishmaniasis.
机译:杜氏利什曼虫分泌的作用毒力因素与宿主蛋白质在感染过程中相互作用人类在发自内心的学习不好利什曼病。放松管制导致由于这些通路水平毒力因素导致可怜的理解寄生虫的策略来破坏主机内免疫反应,确保其生存主机和进一步的传播感染内脏器官。计算工作流宿主-病原体。预测蛋白质interactome L.donovani分泌毒力因子与人类蛋白质结合基于Interolog映射和基于结构域相互作用的映射技术。方法和最短路径分析方法interactome。涉及一些独特和感染路径本次疾病有关的信号通路影响细胞表型在宿主的反应。位于硅片基因敲除研究揭示的哥伦比亚大学,1433年首次z和HS90A中介蛋白质作为潜在的免疫调节的候选人的毒力因素采用感染路径。可以有效地用来作为中介的蛋白质可能的目标控制和调节感染过程进一步协助治疗内脏利什曼病。

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