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CRISPR 在结核分枝杆菌感染中的未来。

The future of CRISPR in Mycobacterium tuberculosis infection.

机构信息

Laboratoire d'Optique et Biosciences (LOB), Ecole Polytechnique, Route de Saclay 91120, Palaiseau, France.

Université Paris-Saclay, CNRS, AgroParisTech, Ecologie Systématique et Evolution, 91190, Gif-Sur-Yvette, France.

出版信息

J Biomed Sci. 2023 May 27;30(1):34. doi: 10.1186/s12929-023-00932-4.

Abstract

Clustered Regularly Interspaced Short Palindromic repeats (CRISPR)-Cas systems rapidly raised from a bacterial genetic curiosity to the most popular tool for genetic modifications which revolutionized the study of microbial physiology. Due to the highly conserved nature of the CRISPR locus in Mycobacterium tuberculosis, the etiological agent of one of the deadliest infectious diseases globally, initially, little attention was paid to its CRISPR locus, other than as a phylogenetic marker. Recent research shows that M. tuberculosis has a partially functional Type III CRISPR, which provides a defense mechanism against foreign genetic elements mediated by the ancillary RNAse Csm6. With the advent of CRISPR-Cas based gene edition technologies, our possibilities to explore the biology of M. tuberculosis and its interaction with the host immune system are boosted. CRISPR-based diagnostic methods can lower the detection threshold to femtomolar levels, which could contribute to the diagnosis of the still elusive paucibacillary and extrapulmonary tuberculosis cases. In addition, one-pot and point-of-care tests are under development, and future challenges are discussed. We present in this literature review the potential and actual impact of CRISPR-Cas research on human tuberculosis understanding and management. Altogether, the CRISPR-revolution will revitalize the fight against tuberculosis with more research and technological developments.

摘要

成簇规律间隔短回文重复(CRISPR)-Cas 系统迅速从细菌遗传学的好奇心转变为最流行的遗传修饰工具,彻底改变了微生物生理学的研究。由于结核分枝杆菌(导致全球最致命传染病之一的病原体)的 CRISPR 基因座具有高度保守性,最初,除了作为系统发育标记外,人们很少关注其 CRISPR 基因座。最近的研究表明,结核分枝杆菌具有部分功能的 III 型 CRISPR,它通过辅助 RNAse Csm6 提供了一种针对外来遗传元件的防御机制。随着基于 CRISPR-Cas 的基因编辑技术的出现,我们探索结核分枝杆菌生物学及其与宿主免疫系统相互作用的可能性得到了增强。基于 CRISPR 的诊断方法可以将检测阈值降低到飞摩尔水平,这有助于诊断仍然难以捉摸的少菌和肺外结核病例。此外,正在开发一锅法和即时检测测试,未来的挑战也在讨论中。在本文的文献综述中,我们介绍了 CRISPR-Cas 研究对人类结核病理解和管理的潜在和实际影响。总之,CRISPR 革命将通过更多的研究和技术发展重振对抗结核病的斗争。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fafc/10223869/55931e0150ca/12929_2023_932_Fig1_HTML.jpg

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