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借鉴用于揭示宿主-病原体相互作用的组学策略:现状与展望。

Learning from -omics strategies applied to uncover host-pathogen interactions: Current status and perspectives.

作者信息

López-López Nahikari, Gil-Campillo Celia, Díez-Martínez Roberto, Garmendia Junkal

机构信息

Instituto de Agrobiotecnología, Consejo Superior de Investigaciones Científicas (IdAB-CSIC)-Gobierno de Navarra, Mutilva, Spain.

Telum Therapeutics, Noain, Spain.

出版信息

Comput Struct Biotechnol J. 2021 May 15;19:3042-3050. doi: 10.1016/j.csbj.2021.05.026. eCollection 2021.

Abstract

has contributed to key bacterial genome sequencing hallmarks, as being not only the first bacterium to be genome-sequenced, but also starring the first genome-wide analysis of chromosomes directly transformed with DNA from a divergent genotype, and pioneering Tn-seq methodologies. Over the years, the phenomenal and constantly evolving development of -omic technologies applied to a whole range of biological questions of clinical relevance in the -host interplay, has greatly moved forward our understanding of this human-adapted pathogen, responsible for multiple acute and chronic infections of the respiratory tract. In this way, essential genes, virulence factors, pathoadaptive traits, and multi-layer gene expression regulatory networks with both genomic and epigenomic complexity levels are being elucidated. Likewise, the unstoppable increasing whole genome sequencing information underpinning great genomic plasticity, mainly when referring to non-capsulated strains, poses major challenges to understand the genomic basis of clinically relevant phenotypes and even more, to clearly highlight potential targets of clinical interest for diagnostic, therapeutic or vaccine development. We review here how genomic, transcriptomic, proteomic and metabolomic-based approaches are great contributors to our current understanding of the interactions between and the human airways, and point possible strategies to maximize their usefulness in the context of biomedical research and clinical needs on this human-adapted bacterial pathogen.

摘要

它促成了关键的细菌基因组测序标志,不仅是首个进行基因组测序的细菌,还率先对直接用来自不同基因型的DNA转化的染色体进行了全基因组分析,并开创了Tn-seq方法。多年来,应用于宿主相互作用中一系列具有临床相关性的生物学问题的组学技术取得了惊人且不断发展的进展,极大地推动了我们对这种适应人类的病原体的理解,它导致了呼吸道的多种急性和慢性感染。通过这种方式,具有基因组和表观基因组复杂程度的必需基因、毒力因子、致病适应性特征以及多层基因表达调控网络正在被阐明。同样,支撑巨大基因组可塑性的全基因组测序信息不断增加,主要是在涉及非荚膜菌株时,这对理解临床相关表型的基因组基础构成了重大挑战,更不用说明确突出对诊断、治疗或疫苗开发具有临床意义的潜在靶点了。我们在此回顾基于基因组、转录组、蛋白质组和代谢组的方法如何极大地促进了我们目前对[病原体名称]与人类气道之间相互作用的理解,并指出在针对这种适应人类的细菌病原体的生物医学研究和临床需求背景下最大化其效用的可能策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4965/8178019/7f975b7e7bd7/gr1.jpg

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