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Csm6依赖CARF的RNA优先切割增加了分枝杆菌对药物的敏感性。

CARF-dependent preferential RNA cleavage by Csm6 increases drug susceptibility of mycobacteria.

作者信息

Wei Wenping, Gao Chun-Hui, Jiang Xiaofang, Qiao Junjie, Zhang Li, Yan Yunjun, Zhao Guowei, Yang Kaixin, Yan Jinyong, Yang Min

机构信息

Key Laboratory of Molecular Biophysics of the Ministry of Education, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, China.

National Key Laboratory of Agricultural Microbiology, College of Resources and Environment, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Nucleic Acids Res. 2025 Jun 20;53(12). doi: 10.1093/nar/gkaf622.

Abstract

CRISPR-Cas systems are prokaryotic adaptive immune systems that defend against invading mobile genetic elements. The type III-A CRISPR-Cas system has been studied in the evolutionary and epidemiological context of Mycobacterium tuberculosis, the causative agent of tuberculosis. However, its biological function remains poorly understood. Here, we demonstrate that heterologous expression of csm6, a single-stranded RNA ribonuclease of the CRISPR-Cas system, exhibits preferential RNA cleavage activity targeting host transcripts. This activity significantly downregulates ribosomal and mycolic acid biosynthesis pathway genes, leading to a global reduction in translation levels and an increased drug susceptibility of Mycobacterium smegmatis. Furthermore, mutagenesis analysis revealed that Csm6's biological function critically depends on its CARF domain rather than its HEPN domain. In conclusion, our study elucidates the biological role of the Csm6 protein in the CRISPR-Cas system, both in vitro and in vivo, highlighting how preferential RNA cleavage impacts multiple mycobacterial processes. These findings provide novel insights into the functional diversity of CRISPR-Cas systems in mycobacteria.

摘要

CRISPR-Cas系统是原核生物的适应性免疫系统,可抵御入侵的移动遗传元件。III-A型CRISPR-Cas系统已在结核病病原体结核分枝杆菌的进化和流行病学背景下进行了研究。然而,其生物学功能仍知之甚少。在此,我们证明CRISPR-Cas系统的单链RNA核糖核酸酶csm6的异源表达表现出靶向宿主转录本的优先RNA切割活性。这种活性显著下调核糖体和分枝菌酸生物合成途径基因,导致耻垢分枝杆菌的翻译水平整体降低和药物敏感性增加。此外,诱变分析表明,Csm6的生物学功能关键取决于其CARF结构域而非HEPN结构域。总之,我们的研究阐明了Csm6蛋白在CRISPR-Cas系统中的生物学作用,包括体外和体内,突出了优先RNA切割如何影响多个分枝杆菌过程。这些发现为分枝杆菌中CRISPR-Cas系统的功能多样性提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9090/12214007/2f7e9caf7006/gkaf622figgra1.jpg

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