Sinan Selma, Appleby Nathan M, Russell Rick
Department of Molecular Biosciences, University of Texas at Austin, Austin TX 78712.
bioRxiv. 2023 Jul 25:2023.07.25.550589. doi: 10.1101/2023.07.25.550589.
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 , 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 affinities of both the precursor and mature forms of the crRNA, while deletion of an upstream sequence had no significant effect on affinity of the pre-crRNA. After processing, the mature crRNA remains very tightly bound to Cas12a, with a half-life of ~1 day and a value of 60 pM. Addition of a 5'-phosphoryl group, which is normally lost during the processing reaction as the scissile phosphate, tightens binding of the mature crRNA by ~10-fold by accelerating binding and slowing dissociation. Using a direct competition assay, we found that pre-crRNA binding specificity is robust to other changes in RNA sequence, including tested changes in the guide sequence, addition of a 3' extension, and secondary structure within the guide region. Together our results provide a quantitative framework for pre-crRNA binding and processing by Cas12a and suggest strategies for optimizing crRNA design in some genome editing applications.
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工具。在此,我们构建了一个关于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Kd = 0.6 pM),以至于前体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crRNA前体和成熟形式的亲和力贡献了10倍,而上游序列的缺失对前体crRNA的亲和力没有显著影响。加工后,成熟的crRNA仍与Cas12a紧密结合,半衰期约为1天,解离常数Kd为60 pM。添加一个5'-磷酸基团(在加工反应中作为可切割磷酸通常会丢失),通过加速结合和减缓解离使成熟crRNA的结合增强约10倍。使用直接竞争试验,我们发现前体crRNA的结合特异性对RNA序列的其他变化具有抗性,包括引导序列的测试变化、3'端延伸的添加以及引导区域内的二级结构。我们的结果共同为Cas12a加工前体crRNA提供了一个定量框架,并为一些基因组编辑应用中优化crRNA设计提供了策略。