CasZyme, Vilnius, LT-10257, Lithuania.
Department of Molecular Engineering, Corteva Agriscience™, Johnston, IA, 50131, USA.
Nat Commun. 2020 Nov 2;11(1):5512. doi: 10.1038/s41467-020-19344-1.
Bacterial Cas9 nucleases from type II CRISPR-Cas antiviral defence systems have been repurposed as genome editing tools. Although these proteins are found in many microbes, only a handful of variants are used for these applications. Here, we use bioinformatic and biochemical analyses to explore this largely uncharacterized diversity. We apply cell-free biochemical screens to assess the protospacer adjacent motif (PAM) and guide RNA (gRNA) requirements of 79 Cas9 proteins, thus identifying at least 7 distinct gRNA classes and 50 different PAM sequence requirements. PAM recognition spans the entire spectrum of T-, A-, C-, and G-rich nucleotides, from single nucleotide recognition to sequence strings longer than 4 nucleotides. Characterization of a subset of Cas9 orthologs using purified components reveals additional biochemical diversity, including both narrow and broad ranges of temperature dependence, staggered-end DNA target cleavage, and a requirement for long stretches of homology between gRNA and DNA target. Our results expand the available toolset of RNA-programmable CRISPR-associated nucleases.
细菌 Cas9 核酸酶来源于 II 型 CRISPR-Cas 抗病毒防御系统,已被重新用作基因组编辑工具。尽管这些蛋白质存在于许多微生物中,但只有少数几种变体用于这些应用。在这里,我们使用生物信息学和生物化学分析来探索这种在很大程度上尚未被描述的多样性。我们应用无细胞生化筛选来评估 79 种 Cas9 蛋白的前间区序列邻近基序 (PAM) 和向导 RNA (gRNA) 要求,从而确定至少 7 种不同的 gRNA 类别和 50 种不同的 PAM 序列要求。PAM 识别跨越 T、A、C 和 G 丰富核苷酸的整个范围,从单核苷酸识别到长于 4 个核苷酸的序列字符串。使用纯化组件对 Cas9 同源物的一部分进行表征揭示了额外的生化多样性,包括温度依赖性的宽窄范围、交错末端 DNA 靶标切割以及 gRNA 和 DNA 靶标之间长片段同源性的要求。我们的结果扩展了 RNA 可编程的 CRISPR 相关核酶的现有工具集。
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