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CRISPR-Cas12a对前体crRNA结合和加工的动力学解析

Kinetic dissection of pre-crRNA binding and processing by CRISPR-Cas12a.

作者信息

Sinan Selma, Appleby Nathan M, Chou Chia-Wei, Finkelstein Ilya J, Russell Rick

机构信息

Department of Molecular Biosciences, University of Texas at Austin, Austin, Texas 78712, USA.

Department of Molecular Biosciences, University of Texas at Austin, Austin, Texas 78712, USA

出版信息

RNA. 2024 Sep 16;30(10):1345-1355. doi: 10.1261/rna.080088.124.

Abstract

CRISPR-Cas12a binds and processes a single pre-crRNA during maturation, providing a simple tool for genome editing applications. Here, we constructed a kinetic and thermodynamic framework for pre-crRNA processing by Cas12a in vitro, and we measured the contributions of distinct regions of the pre-crRNA to this reaction. We find that the pre-crRNA binds rapidly and extraordinarily tightly to Cas12a ( = 0.6 pM), such that pre-crRNA binding is fully rate limiting for processing and therefore determines the specificity of Cas12a for different pre-crRNAs. The guide sequence contributes 10-fold to the binding affinity of the pre-crRNA, while deletion of an upstream sequence has no significant effect. After processing, the mature crRNA remains very tightly bound to Cas12a with a comparable affinity. Strikingly, the affinity contribution of the guide region increases to 600-fold after processing, suggesting that additional contacts are formed and may preorder the crRNA for efficient DNA target recognition. Using a direct competition assay, we find that pre-crRNA-binding specificity is robust to changes in the guide sequence, addition of a 3' extension, and secondary structure within the guide region. However, stable secondary structure in the guide region can strongly inhibit DNA targeting, indicating that care should be taken in crRNA design. Together, our results provide a quantitative framework for pre-crRNA binding and processing by Cas12a and suggest strategies for optimizing crRNA design in genome editing applications.

摘要

CRISPR-Cas12a在成熟过程中结合并加工单个前体crRNA,为基因组编辑应用提供了一个简单的工具。在此,我们构建了一个体外Cas12a加工前体crRNA的动力学和热力学框架,并测量了前体crRNA不同区域对该反应的贡献。我们发现前体crRNA与Cas12a快速且异常紧密地结合(解离常数 = 0.6 pM),使得前体crRNA的结合是加工过程中完全的限速步骤,因此决定了Cas12a对不同前体crRNA的特异性。引导序列对前体crRNA的结合亲和力贡献了10倍,而上游序列的缺失没有显著影响。加工后,成熟的crRNA仍以相当的亲和力与Cas12a紧密结合。令人惊讶的是,加工后引导区域的亲和力贡献增加到600倍,这表明形成了额外的接触,并且可能使crRNA有序排列以实现高效的DNA靶标识别。使用直接竞争测定法,我们发现前体crRNA结合特异性对引导序列的变化、3'端延伸的添加以及引导区域内的二级结构具有抗性。然而,引导区域中稳定的二级结构可强烈抑制DNA靶向,这表明在crRNA设计中应谨慎。总之,我们的结果为Cas12a加工前体crRNA提供了一个定量框架,并为优化基因组编辑应用中的crRNA设计提出了策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ef1/11404446/5015604f6076/1345f01.jpg

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