Genetic Diversity in Mycobacterium tuberculosis Clinical Isolates and Resulting Outcomes of Tuberculosis Infection and Disease.

IF 8.7 1区 生物学 Q1 GENETICS & HEREDITY
Annual review of genetics Pub Date : 2020-11-23 Epub Date: 2020-09-14 DOI:10.1146/annurev-genet-022820-085940
Julian S Peters, Nabila Ismail, Anzaan Dippenaar, Shuyi Ma, David R Sherman, Robin M Warren, Bavesh D Kana
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引用次数: 16

Abstract

Tuberculosis claims more human lives than any other bacterial infectious disease and represents a clear and present danger to global health as new tools for vaccination, treatment, and interruption of transmission have been slow to emerge. Additionally, tuberculosis presents with notable clinical heterogeneity, which complicates diagnosis, treatment, and the establishment of nonrelapsing cure. How this heterogeneity is driven by the diversity ofclinical isolates of the causative agent, Mycobacterium tuberculosis, has recently garnered attention. Herein, we review advances in the understanding of how naturally occurring variation in clinical isolates affects transmissibility, pathogenesis, immune modulation, and drug resistance. We also summarize how specific changes in transcriptional responses can modulate infection or disease outcome, together with strain-specific effects on gene essentiality. Further understanding of how this diversity of M. tuberculosis isolates affects disease and treatment outcomes will enable the development of more effective therapeutic options and vaccines for this dreaded disease.

结核分枝杆菌临床分离株的遗传多样性及结核感染和疾病的结果。
结核病夺去的生命比任何其他细菌性传染病都多,由于疫苗接种、治疗和阻断传播的新工具出现缓慢,结核病对全球健康构成了明确而现实的威胁。此外,结核病表现出明显的临床异质性,这使诊断、治疗和建立不可复发的治愈方法变得复杂。这种异质性是如何由病原体结核分枝杆菌临床分离株的多样性驱动的,最近引起了人们的关注。在此,我们回顾了在了解临床分离株自然发生的变异如何影响传播性、发病机制、免疫调节和耐药性方面的进展。我们还总结了转录反应的特定变化如何调节感染或疾病结果,以及菌株特异性对基因必要性的影响。进一步了解这种结核分枝杆菌分离株的多样性如何影响疾病和治疗结果,将有助于为这种可怕的疾病开发更有效的治疗方案和疫苗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Annual review of genetics
Annual review of genetics 生物-遗传学
CiteScore
18.30
自引率
0.90%
发文量
17
期刊介绍: The Annual Review of Genetics, published since 1967, comprehensively covers significant advancements in genetics. It encompasses various areas such as biochemical, behavioral, cell, and developmental genetics, evolutionary and population genetics, chromosome structure and transmission, gene function and expression, mutation and repair, genomics, immunogenetics, and other topics related to the genetics of viruses, bacteria, fungi, plants, animals, and humans.
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