Department of Biology, Johns Hopkins University, Baltimore, MD 21218, USA.
Department of Biophysics and Biophysical Chemistry, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
Nucleic Acids Res. 2019 Dec 16;47(22):11880-11888. doi: 10.1093/nar/gkz1058.
Cas9 has made a wide range of genomic manipulation possible. However, its specificity continues to be a challenge. Non-canonical gRNAs and new engineered variants of Cas9 have been developed to improve specificity, but at the cost of the on-target activity. DNA unwinding is a checkpoint before cleavage by Cas9, and was shown to be made more sensitive to sequence mismatches by specificity-enhancing mutations in engineered Cas9s. Here we performed single-molecule FRET-based DNA unwinding experiments using various combinations of non-canonical gRNAs and different Cas9s. All engineered Cas9s were less promiscuous than wild type when canonical gRNA was used, but HypaCas9 had much-reduced on-target unwinding. Cas9-HF1 and eCas9 showed the best balance between low promiscuity and high on-target activity with canonical gRNA. When extended gRNAs with one or two non-matching guanines added to the 5' end were used, Sniper1-Cas9 showed the lowest promiscuity while maintaining high on-target activity. Truncated gRNA generally reduced unwinding and adding a non-matching guanine to the 5' end of gRNA influenced unwinding in a sequence-context dependent manner. Our results are consistent with cell-based cleavage data and provide a mechanistic understanding of how various Cas9/gRNA combinations perform in genome engineering.
Cas9 使得广泛的基因组操作成为可能。然而,其特异性仍然是一个挑战。非规范的 gRNA 和新设计的 Cas9 变体已经被开发出来以提高特异性,但这是以牺牲靶活性为代价的。DNA 解旋是 Cas9 切割前的一个检查点,研究表明,通过工程 Cas9 中的特异性增强突变,使 DNA 解旋对序列错配更加敏感。在这里,我们使用各种非规范 gRNA 和不同的 Cas9 进行了基于单分子 FRET 的 DNA 解旋实验。当使用规范的 gRNA 时,所有的工程 Cas9 都比野生型更具特异性,但 HypaCas9 的靶标解旋活性大大降低。Cas9-HF1 和 eCas9 在使用规范的 gRNA 时,在低特异性和高靶标活性之间表现出最佳的平衡。当使用在 5'端添加一个或两个非匹配鸟嘌呤的扩展 gRNA 时,Sniper1-Cas9 表现出最低的特异性,同时保持高靶标活性。截短的 gRNA 通常会降低解旋,并且在 gRNA 的 5'端添加一个非匹配的鸟嘌呤会以序列上下文依赖的方式影响解旋。我们的结果与基于细胞的切割数据一致,并提供了对各种 Cas9/gRNA 组合在基因组工程中表现的机制理解。