Wei Junwei, Motawaa Mohamed, Li Yingjun
National Key Laboratory of Agricultural Microbiology, College of Life Science & Technology, Huazhong Agricultural University, Wuhan, China.
Department of Agricultural Biotechnology, Faculty of Agriculture, Damietta University, Damietta, Egypt.
Bio Protoc. 2025 Jul 20;15(14):e5382. doi: 10.21769/BioProtoc.5382.
The CRISPR-Cas system of has emerged as a potent biotechnological tool, particularly its Cas6 endonuclease, which plays a crucial role in CRISPR RNA (crRNA) maturation. This protocol details a robust and reproducible method for the high-level expression and purification of recombinant Cas6 proteins (Cas6-1 and Cas6-2) in . We describe a streamlined approach encompassing plasmid construction using seamless assembly, optimized bacterial heterologous expression, and multi-step purification leveraging affinity and size-exclusion chromatography. The protocol outlines the generation of both His-tagged and GST-tagged Cas6 variants, enabling flexibility in downstream applications. Key steps, including primer design, PCR optimization, competent cell transformation, and chromatography strategies, are meticulously detailed with critical parameters and troubleshooting guidance to ensure experimental success and high yields of highly pure and active Cas6 proteins. This protocol is useful for researchers requiring purified Cas6 for structural studies, biochemical characterization, and the development of CRISPR-based biotechnological tools. Key features • Robust method for expressing and purifying Cas6 proteins in • Seamless assembly cloning and dual affinity tagging system: Offers options for both His-tag and GST-tag purification strategies for increased versatility. • Applicable for diverse heterologous expression and purification of well-folding thermostable proteins in mesophilic host chassis cells [ BL21(DE3)].
嗜热栖热菌(Thermus thermophilus)的CRISPR-Cas系统已成为一种强大的生物技术工具,尤其是其Cas6核酸内切酶,它在CRISPR RNA(crRNA)成熟过程中起着关键作用。本方案详细介绍了一种在嗜热栖热菌中高效表达和纯化重组Cas6蛋白(Cas6-1和Cas6-2)的可靠且可重复的方法。我们描述了一种简化的方法,包括使用无缝组装进行质粒构建、优化的细菌异源表达以及利用亲和色谱和尺寸排阻色谱进行多步纯化。该方案概述了His标签和GST标签Cas6变体的生成,为下游应用提供了灵活性。关键步骤,包括引物设计、PCR优化、感受态细胞转化和色谱策略,都进行了详细的阐述,并给出了关键参数和故障排除指南,以确保实验成功并获得高纯度和高活性的嗜热栖热菌Cas6蛋白的高产率。本方案对需要纯化嗜热栖热菌Cas6用于结构研究、生化表征以及基于CRISPR的生物技术工具开发的研究人员很有用。关键特性 • 在嗜热栖热菌中表达和纯化Cas6蛋白的可靠方法 • 无缝组装克隆和双亲和标签系统:提供His标签和GST标签纯化策略的选择,以增加通用性。 • 适用于在嗜温宿主底盘细胞[BL21(DE3)]中对多种易于折叠的热稳定蛋白进行异源表达和纯化