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工程化高保真 Cas12a 核酸酶变体,实现等位基因特异性编辑。

Engineering of a high-fidelity Cas12a nuclease variant capable of allele-specific editing.

机构信息

Department of Cardiology, the First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.

Center for Medical Research and Innovation, Shanghai Pudong Hospital, Fudan University Pudong Medical Center, School of Life Sciences, Shanghai Engineering Research Center of Industrial Microorganisms, Fudan University, Shanghai, China.

出版信息

PLoS Biol. 2024 Jun 12;22(6):e3002680. doi: 10.1371/journal.pbio.3002680. eCollection 2024 Jun.

Abstract

CRISPR-Cas12a, often regarded as a precise genome editor, still requires improvements in specificity. In this study, we used a GFP-activation assay to screen 14 new Cas12a nucleases for mammalian genome editing, successfully identifying 9 active ones. Notably, these Cas12a nucleases prefer pyrimidine-rich PAMs. Among these nucleases, we extensively characterized Mb4Cas12a obtained from Moraxella bovis CCUG 2133, which recognizes a YYN PAM (Y = C or T). Our biochemical analysis demonstrates that Mb4Cas12a can cleave double-strand DNA across a wide temperature range. To improve specificity, we constructed a SWISS-MODEL of Mb4Cas12a based on the FnCas12a crystal structure and identified 8 amino acids potentially forming hydrogen bonds at the target DNA-crRNA interface. By replacing these amino acids with alanine to disrupt the hydrogen bond, we tested the influence of each mutation on Mb4Cas12a specificity. Interestingly, the F370A mutation improved specificity with minimal influence on activity. Further study showed that Mb4Cas12a-F370A is capable of discriminating single-nucleotide polymorphisms. These new Cas12a orthologs and high-fidelity variants hold substantial promise for therapeutic applications.

摘要

CRISPR-Cas12a 通常被认为是一种精确的基因组编辑工具,但仍需要提高特异性。在这项研究中,我们使用 GFP 激活测定法筛选了 14 种新的 Cas12a 核酸酶用于哺乳动物基因组编辑,成功鉴定出 9 种活性核酸酶。值得注意的是,这些 Cas12a 核酸酶偏好嘧啶丰富的 PAMs。在这些核酸酶中,我们广泛表征了从 Moraxella bovis CCUG 2133 中获得的 Mb4Cas12a,它识别 YYN PAM(Y = C 或 T)。我们的生化分析表明,Mb4Cas12a 可以在较宽的温度范围内切割双链 DNA。为了提高特异性,我们基于 FnCas12a 晶体结构构建了 Mb4Cas12a 的 SWISS-MODEL,并鉴定了 8 个可能在靶 DNA-crRNA 界面形成氢键的氨基酸。通过用丙氨酸替换这些氨基酸以破坏氢键,我们测试了每个突变对 Mb4Cas12a 特异性的影响。有趣的是,F370A 突变提高了特异性,而对活性的影响最小。进一步的研究表明,Mb4Cas12a-F370A 能够区分单核苷酸多态性。这些新的 Cas12a 同源物和高保真变体在治疗应用中具有很大的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cd1/11168656/87963e8aa32d/pbio.3002680.g001.jpg

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