Bhatia Simran, Yadav Sudesh Kumar
Center of Innovative and applied Bioprocessing, Sector-81, Knowledge City, Mohali, India; Regional Center for Biotechnology, Faridabad, India.
Center of Innovative and applied Bioprocessing, Sector-81, Knowledge City, Mohali, India.
Int J Biol Macromol. 2023 May 31;238:124054. doi: 10.1016/j.ijbiomac.2023.124054. Epub 2023 Mar 17.
Clustered regularly interspersed short pallindromic repeats (CRISPR) and CRISPR associated proteins (Cas) system (CRISPR-Cas) came into light as prokaryotic defence mechanism for adaptive immune response. CRISPR-Cas works by integrating short sequences of the target genome (spacers) into the CRISPR locus. The locus containing spacers interspersed repeats is further expressed into small guide CRISPR RNA (crRNA) which is then deployed by the Cas proteins to evade the target genome. Based on the Cas proteins CRISPR-Cas is classified according to polythetic system of classification. The characteristic of the CRISPR-Cas9 system to target DNA sequences using programmable RNAs has opened new arenas due to which today CRISPR-Cas has evolved as cutting end technique in the field of genome editing. Here, we discuss about the evolution of CRISPR, its classification and various Cas systems including the designing and molecular mechanism of CRISPR-Cas. Applications of CRISPR-Cas as a genome editing tools are also highlighted in the areas such as agriculture, and anticancer therapy. Briefly discuss the role of CRISPR and its Cas systems in the diagnosis of COVID-19 and its possible preventive measures. The challenges in existing CRISP-Cas technologies and their potential solutions are also discussed briefly.
成簇规律间隔短回文重复序列(CRISPR)及其相关蛋白(Cas)系统(CRISPR-Cas)作为原核生物适应性免疫反应的防御机制而受到关注。CRISPR-Cas的工作原理是将靶基因组的短序列(间隔序列)整合到CRISPR基因座中。包含间隔重复序列的基因座进一步转录为小向导CRISPR RNA(crRNA),然后由Cas蛋白利用其识别靶基因组。基于Cas蛋白,CRISPR-Cas根据多元分类系统进行分类。CRISPR-Cas9系统利用可编程RNA靶向DNA序列的特性开辟了新领域,因此如今CRISPR-Cas已发展成为基因组编辑领域的前沿技术。在此,我们讨论CRISPR的进化、其分类以及各种Cas系统,包括CRISPR-Cas的设计和分子机制。还重点介绍了CRISPR-Cas作为基因组编辑工具在农业和抗癌治疗等领域的应用。简要讨论CRISPR及其Cas系统在COVID-19诊断中的作用及其可能的预防措施。还简要讨论了现有CRISP-Cas技术面临的挑战及其潜在解决方案。