Swarts Daan C, Jinek Martin
Department of Biochemistry, University of Zurich, Zurich, Switzerland.
Wiley Interdiscip Rev RNA. 2018 Sep;9(5):e1481. doi: 10.1002/wrna.1481. Epub 2018 May 22.
Cas9 and Cas12a are multidomain CRISPR-associated nucleases that can be programmed with a guide RNA to bind and cleave complementary DNA targets. The guide RNA sequence can be varied, making these effector enzymes versatile tools for genome editing and gene regulation applications. While Cas9 is currently the best-characterized and most widely used nuclease for such purposes, Cas12a (previously named Cpf1) has recently emerged as an alternative for Cas9. Cas9 and Cas12a have distinct evolutionary origins and exhibit different structural architectures, resulting in distinct molecular mechanisms. Here we compare the structural and mechanistic features that distinguish Cas9 and Cas12a, and describe how these features modulate their activity. We discuss implications for genome editing, and how they may influence the choice of Cas9 or Cas12a for specific applications. Finally, we review recent studies in which Cas12a has been utilized as a genome editing tool. This article is categorized under: RNA Interactions with Proteins and Other Molecules > Protein-RNA Interactions: Functional Implications Regulatory RNAs/RNAi/Riboswitches > Biogenesis of Effector Small RNAs RNA Interactions with Proteins and Other Molecules > RNA-Protein Complexes.
Cas9和Cas12a是多结构域CRISPR相关核酸酶,可通过向导RNA进行编程,以结合并切割互补的DNA靶标。向导RNA序列可以改变,这使得这些效应酶成为基因组编辑和基因调控应用的通用工具。虽然Cas9目前是用于此类目的的特征最明确、使用最广泛的核酸酶,但Cas12a(以前称为Cpf1)最近已成为Cas9的替代物。Cas9和Cas12a有不同的进化起源,呈现出不同的结构架构,从而导致不同的分子机制。在这里,我们比较了区分Cas9和Cas12a的结构和机制特征,并描述了这些特征如何调节它们的活性。我们讨论了对基因组编辑的影响,以及它们如何可能影响针对特定应用选择Cas9或Cas12a。最后,我们回顾了最近将Cas12a用作基因组编辑工具的研究。本文分类如下:RNA与蛋白质及其他分子的相互作用>蛋白质-RNA相互作用:功能影响;调控RNA/RNA干扰/核糖开关>效应小RNA的生物合成;RNA与蛋白质及其他分子的相互作用>RNA-蛋白质复合物。