Laboratory of Microbiology, Wageningen University and Research, Wageningen, The Netherlands; Delft, The Netherlands.
Department of Anatomy and Embryology, Leiden University Medical Centre, Leiden, The Netherlands; Delft, The Netherlands.
CRISPR J. 2022 Aug;5(4):571-585. doi: 10.1089/crispr.2022.0011. Epub 2022 Jul 18.
Clustered regularly interspaced short palindromic repeats and CRISPR-associated proteins (CRISPR-Cas) has revolutionized genome editing and has great potential for many applications, such as correcting human genetic disorders. To increase the safety of genome editing applications, CRISPR-Cas may benefit from strict control over Cas enzyme activity. Previously, anti-CRISPR proteins and designed oligonucleotides have been proposed to modulate CRISPR-Cas activity. In this study, we report on the potential of guide-complementary DNA oligonucleotides as controlled inhibitors of Cas9 ribonucleoprotein complexes. First, we show that DNA oligonucleotides inhibit Cas9 activity in human cells, reducing both on- and off-target cleavage. We then used assays to better understand how inhibition is achieved and under which conditions. Two factors were found to be important for robust inhibition: the length of the complementary region and the presence of a protospacer adjacent motif-loop on the inhibitor. We conclude that DNA oligonucleotides can be used to effectively inhibit Cas9 activity both and .
成簇规律间隔短回文重复序列和 CRISPR 相关蛋白 (CRISPR-Cas) 彻底改变了基因组编辑,并在许多应用中具有巨大的潜力,例如纠正人类遗传疾病。为了提高基因组编辑应用的安全性,CRISPR-Cas 可能受益于对 Cas 酶活性的严格控制。以前,已经提出了抗 CRISPR 蛋白和设计的寡核苷酸来调节 CRISPR-Cas 活性。在这项研究中,我们报告了指导互补 DNA 寡核苷酸作为 Cas9 核糖核蛋白复合物的可控抑制剂的潜力。首先,我们表明 DNA 寡核苷酸在人类细胞中抑制 Cas9 活性,减少靶内和靶外切割。然后,我们使用测定来更好地理解如何实现抑制以及在哪些条件下实现抑制。发现有两个因素对于强大的抑制作用很重要:互补区域的长度和抑制剂上存在前导间隔基序环。我们得出结论,DNA 寡核苷酸可用于有效抑制 Cas9 活性,无论是在体外还是在体内。