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快速两步靶向捕获可确保高效的CRISPR-Cas9引导的基因组编辑。

Rapid two-step target capture ensures efficient CRISPR-Cas9-guided genome editing.

作者信息

Shi Honglue, Al-Sayyad Noor, Wasko Kevin M, Trinidad Marena I, Doherty Erin E, Vohra Kamakshi, Boger Ron S, Colognori David, Cofsky Joshua C, Skopintsev Petr, Bryant Zev, Doudna Jennifer A

机构信息

Innovative Genomics Institute, University of California, Berkeley, Berkeley, CA 94720, USA; Howard Hughes Medical Institute, University of California, Berkeley, Berkeley, CA 94720, USA.

Department of Bioengineering, Stanford University, Stanford, CA 94305, USA; Department of Physics, Stanford University, Stanford, CA 94305, USA.

出版信息

Mol Cell. 2025 May 1;85(9):1730-1742.e9. doi: 10.1016/j.molcel.2025.03.024. Epub 2025 Apr 23.

Abstract

RNA-guided CRISPR-Cas enzymes initiate programmable genome editing by recognizing a ∼20-base-pair DNA sequence next to a short protospacer-adjacent motif (PAM). To uncover the molecular determinants of high-efficiency editing, we conducted biochemical, biophysical, and cell-based assays on Streptococcus pyogenes Cas9 (SpyCas9) variants with wide-ranging genome-editing efficiencies that differ in PAM-binding specificity. Our results show that reduced PAM specificity causes persistent non-selective DNA binding and recurrent failures to engage the target sequence through stable guide RNA hybridization, leading to reduced genome-editing efficiency in cells. These findings reveal a fundamental trade-off between broad PAM recognition and genome-editing effectiveness. We propose that high-efficiency RNA-guided genome editing relies on an optimized two-step target capture process, where selective but low-affinity PAM binding precedes rapid DNA unwinding. This model provides a foundation for engineering more effective CRISPR-Cas and related RNA-guided genome editors.

摘要

RNA引导的CRISPR-Cas酶通过识别紧邻短原间隔序列邻近基序(PAM)的约20个碱基对的DNA序列来启动可编程的基因组编辑。为了揭示高效编辑的分子决定因素,我们对化脓性链球菌Cas9(SpyCas9)变体进行了生化、生物物理和基于细胞的分析,这些变体具有广泛的基因组编辑效率,在PAM结合特异性方面存在差异。我们的结果表明,PAM特异性降低会导致持续的非选择性DNA结合,以及通过稳定的引导RNA杂交与靶序列结合的反复失败,从而导致细胞中基因组编辑效率降低。这些发现揭示了广泛的PAM识别与基因组编辑有效性之间的基本权衡。我们提出,高效的RNA引导的基因组编辑依赖于一个优化的两步靶标捕获过程,其中选择性但低亲和力的PAM结合先于快速的DNA解旋。该模型为设计更有效的CRISPR-Cas和相关的RNA引导的基因组编辑器奠定了基础。

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