CRISPR/Cas12a-mediated gene silencing across diverse functional genes demonstrates single gene-specific spacer efficacy in Mycobacterium smegmatis.

IF 5.7 3区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Megha Sodani, Chitra S Misra, Savita Kulkarni, Devashish Rath
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引用次数: 0

Abstract

Background: Tuberculosis, a persistent global health threat, necessitates a comprehensive understanding of the genes and pathways crucial for the survival and virulence of the causative pathogen, Mycobacterium tuberculosis. Working with M. tuberculosis (M.tb) presents significant challenges; therefore, the use of M. smegmatis as a surrogate system for conducting genetic studies of M.tb has proven to be highly valuable. Development of novel genetic tools to probe cellular processes accelerates the progress in the field of drug development and also helps in understanding the basic physiology of the bacterium.

Results: This study reports the successful implementation and evaluation of the CRISPR-Cas12a system for gene repression in Mycobacterium smegmatis, a surrogate for M. tuberculosis. We engineered a Cas12a-based CRISPR interference (CRISPRi) system and assessed its functionality. Targeting 45 genes with a single sgRNA per gene, we achieved efficient gene repression, leading to marked phenotypic changes. Each knockdown strain was evaluated individually for growth phenotypes, and a comparison of the results with the reported essential gene library probed with dCas9 demonstrated congruous results across diverse gene categories. The study shows that CRISPR/Cas12a system can be effectively utilised with a single gene specific target for efficient silencing of the gene and highlights the importance of subsequent growth assays required to evaluate the vulnerability of targeted gene silencing.

Conclusion: Our findings reveal the robustness and versatility of the dCas12a-CRISPRi system in M. smegmatis, providing a valuable tool for functional genomics research. This work showcases the potential of the dCas12a-CRISPRi system in investigating essential genes, enabling a deeper understanding of the biology and potential therapeutic targets in mycobacterium species.

CRISPR/ cas12a介导的跨多种功能基因的基因沉默在耻垢分枝杆菌中证明了单基因特异性间隔器的有效性。
背景:结核病是一种持续的全球健康威胁,需要对致病病原体结核分枝杆菌的生存和毒力至关重要的基因和途径有全面的了解。防治结核分枝杆菌面临重大挑战;因此,使用耻垢分枝杆菌作为进行结核分枝杆菌遗传研究的替代系统已被证明是非常有价值的。开发新的基因工具来探测细胞过程加速了药物开发领域的进展,也有助于理解细菌的基本生理。结果:本研究报道了CRISPR-Cas12a系统在耻垢分枝杆菌(结核分枝杆菌的替代物)中基因抑制的成功实施和评估。我们设计了一个基于cas12的CRISPR干扰(CRISPRi)系统,并评估了其功能。针对45个基因,每个基因一个sgRNA,我们实现了有效的基因抑制,导致显着的表型变化。每个敲低菌株的生长表型被单独评估,结果与报道的用dCas9探测的基本基因库的比较表明,不同基因类别的结果是一致的。该研究表明,CRISPR/Cas12a系统可以有效地与单个基因特异性靶标一起用于有效的基因沉默,并强调了评估靶向基因沉默易感性所需的后续生长试验的重要性。结论:我们的研究结果揭示了耻垢分枝杆菌dCas12a-CRISPRi系统的稳健性和通用性,为功能基因组学研究提供了有价值的工具。这项工作展示了dCas12a-CRISPRi系统在研究必需基因方面的潜力,使人们能够更深入地了解分枝杆菌物种的生物学和潜在的治疗靶点。
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来源期刊
Journal of Biological Engineering
Journal of Biological Engineering BIOCHEMICAL RESEARCH METHODS-BIOTECHNOLOGY & APPLIED MICROBIOLOGY
CiteScore
7.10
自引率
1.80%
发文量
32
审稿时长
17 weeks
期刊介绍: Biological engineering is an emerging discipline that encompasses engineering theory and practice connected to and derived from the science of biology, just as mechanical engineering and electrical engineering are rooted in physics and chemical engineering in chemistry. Topical areas include, but are not limited to: Synthetic biology and cellular design Biomolecular, cellular and tissue engineering Bioproduction and metabolic engineering Biosensors Ecological and environmental engineering Biological engineering education and the biodesign process As the official journal of the Institute of Biological Engineering, Journal of Biological Engineering provides a home for the continuum from biological information science, molecules and cells, product formation, wastes and remediation, and educational advances in curriculum content and pedagogy at the undergraduate and graduate-levels. Manuscripts should explore commonalities with other fields of application by providing some discussion of the broader context of the work and how it connects to other areas within the field.
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