Expression and purification of recombinant DNA endonuclease of CRISPR/Cas system

M. Amanzholova, A. Shaizadinova, S. Abeldenov
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Abstract

Currently, active research work is underway to study and use site-specific RNA-guided endonucleases as tools for use in the field of genome editing and diagnostics in the biomedical and biotechnological fields. To date, the most effective method in this area is the CRISPR method. Due to its ease of targeting, this system was quickly adopted as the method of choice for editing the genomes of numerous organisms. More recently, another novel CRISPR-Cas class 2 endonuclease with characteristic features has been discovered in bacterial genomes: Cas12a. The Cas12a enzyme is a site-specific RNA-guided endonuclease that can be used for precise genome editing in various cell types of different species, as well as for diagnostic applications. The search, identification and characterization of new unexplored homologues will expand the potential of enzyme applications. In this work, the expression and two-stage chromatographic purification of the recombinant enzyme Cas12a of high purity were carried out. In vitro synthesized crRNA, ribonucleoprotein complex were obtained and by the endonuclease activity of the enzyme in relation to the substrate containing the target sequence for cleavage in the appropriate site was confirmed. The resulting enzyme can be used to further describe its kinetic parameters, which can be applied in the development of new next-generation diagnostics.
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CRISPR/Cas系统重组DNA内切酶的表达与纯化
目前,研究和利用位点特异性rna引导的内切酶作为工具在生物医学和生物技术领域的基因组编辑和诊断领域正在进行积极的研究工作。迄今为止,这一领域最有效的方法是CRISPR方法。由于其易于靶向,该系统很快被采用为编辑许多生物基因组的首选方法。最近,在细菌基因组中发现了另一种具有特征的新型CRISPR-Cas 2类内切酶:Cas12a。Cas12a酶是一种位点特异性rna引导的内切酶,可用于不同物种的各种细胞类型的精确基因组编辑,以及诊断应用。寻找、鉴定和鉴定新的未开发的同源物将扩大酶的应用潜力。本工作对高纯度重组酶Cas12a进行了表达和两级层析纯化。体外合成的crRNA,获得核糖核蛋白复合物,并通过酶的内切酶活性相对于底物中所含的目标序列在合适的位点进行切割确认。所得到的酶可以用来进一步描述其动力学参数,这可以应用于新一代诊断试剂的开发。
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