New insights into the landscape relationships of host response to bacterial pathogens

Xiaoyao Yin, Lu Han, Hui Bai, Xiaochen Bo, Yun Bai, Cong Niu, Naiyang Guan, Zhigang Luo
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Abstract

Modern understanding of microbiology largely lays foundation in the biological characterization of microorganisms. However, the landscape relationships of host transcriptional response (HTR) to different bacterial pathogens have not yet been systematically explored. Here, we established the first generation of HTR network (HTRN) according to the HTR similarities among 21 different human pathogenic bacterial species by integrating 258 pairs of host cellular gene expression profiles upon infections. Further, the network was dissected into five bacterial communities of more consensus internal HTR. Interestingly, analysis of signature genes across different communities revealed that distinct community signatures (CS) present differential gene expression patterns. Functional annotation suggested a common feature of host cell response to bacterial infections that specific functional gene clusters (BPs and/or signaling pathways) were preferentially elicited or subverted by community bacterial pathogens. Notably, community signatures (especially key associators participating dissimilar functional profiles) were highly enriched of GWAS disease-related genes, which associated bacterial infections with common and specific non-infectious human disease(s). About 40% of the associations were confirmed by literature investigation that further indicated possible/potential association directionality. Our characterization and analysis were the first to feature differential community HTRs upon bacterial pathogen infections and suggested new perspective of understanding infection-disease associations and underlying pathogenesis.
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宿主对细菌病原体反应的景观关系的新见解
现代对微生物学的认识在很大程度上为微生物的生物学特性奠定了基础。然而,宿主对不同病原菌的转录反应(HTR)的景观关系尚未得到系统的探讨。本研究通过整合258对感染后宿主细胞基因表达谱,根据21种不同人类致病菌HTR的相似性,建立了第一代HTR网络(HTRN)。此外,该网络被分解成五个更一致的内部HTR细菌群落。有趣的是,对不同群落特征基因的分析表明,不同的群落特征(CS)存在差异的基因表达模式。功能注释表明宿主细胞对细菌感染反应的一个共同特征是,特定的功能基因簇(bp和/或信号通路)被群落细菌病原体优先诱导或破坏。值得注意的是,社区特征(特别是参与不同功能谱的关键相关基因)高度富集了GWAS疾病相关基因,这些基因将细菌感染与常见和特定的非传染性人类疾病联系起来。约40%的关联通过文献调查得到证实,进一步表明可能/潜在的关联方向性。我们的表征和分析首次揭示了细菌病原体感染的不同群落htr,并为理解感染-疾病关联和潜在发病机制提供了新的视角。
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