National Agri-Food Biotechnology Institute, Knowledge City, Sector 81, Mohali, Punjab, 140306, India; Regional Center for Biotechnology, Faridabad, Haryana, 160014, India.
National Agri-Food Biotechnology Institute, Knowledge City, Sector 81, Mohali, Punjab, 140306, India.
Protein Expr Purif. 2024 Aug;220:106500. doi: 10.1016/j.pep.2024.106500. Epub 2024 May 7.
CRISPR-Cas9 (Clustered Regularly Interspaced Short Palindromic Repeats-CRISPR associated enzyme 9) is known for its simplicity, versatility, and scalability in genome editing applications. In vitro Cas9, when complexed with sgRNA, binds and cleaves the complementary target sequences with almost perfect precision. The enzyme is exploited for various applications in understanding and changing gene function. dCas9 (deactivated or dead Cas9) is a double mutated version of Cas9 that bears mutations in the nuclease domains of the enzyme and thus cannot cleave the target DNA. dCas9 is equally advantageous since it can alter gene expression using various transcriptional activators CRISPRa and repressors CRISPRi. Additionally, dCas9 can bind to the desired target gene without cleaving it, making it a unique reagent to study the kinetics and stability of RNA-protein-DNA interactions required to design more efficient and specific gene-editing nucleases. An appreciable quantity of pure and homogeneous protein is needed to characterise dCas9 for its structural and functional understanding. This study used an N-terminal acidic tag to express the dCas9 in an E. coli-bacterial host. A simple single-step protocol for robust and efficient production of dCas9 has been described. The study and methods are distinctive as the purification is performed in a single step using inexpensive multi-modal hydroxyapatite chromatography. The purified protein can be used in different in vitro and in vivo studies.
CRISPR-Cas9(规律成簇间隔短回文重复序列-相关酶 9)以其在基因组编辑应用中的简单性、多功能性和可扩展性而闻名。体外 Cas9 与 sgRNA 复合后,以几乎完美的精度结合并切割互补的靶序列。该酶被用于理解和改变基因功能的各种应用。dCas9(失活或死亡 Cas9)是 Cas9 的双突变体,其酶的核酸酶结构域发生突变,因此不能切割靶 DNA。dCas9 同样具有优势,因为它可以使用各种转录激活剂 CRISPRa 和抑制剂 CRISPRi 改变基因表达。此外,dCas9 可以与所需的靶基因结合而不切割它,使其成为研究设计更高效和特异性基因编辑核酸酶所需的 RNA-蛋白质-DNA 相互作用的动力学和稳定性的独特试剂。为了对 dCas9 进行结构和功能理解,需要大量纯净且均一的蛋白质进行表征。本研究使用 N 端酸性标签在大肠杆菌宿主中表达 dCas9。描述了一种简单的一步法方案,用于高效生产 dCas9。该研究和方法具有独特性,因为使用廉价的多模态羟基磷灰石层析法在一步中进行纯化。纯化的蛋白质可用于不同的体外和体内研究。