Roointan Amir, Morowvat Mohammad Hossein
a Department of Medical Biotechnology, School of Advanced Medical Sciences and Technologies , Shiraz , Iran.
c Department of Medical Biotechnology, School of Medicine , Fasa University of Medical Sciences , Fasa , Iran.
Biotechnol Genet Eng Rev. 2016 Apr-Oct;32(1-2):74-91. doi: 10.1080/02648725.2016.1270095. Epub 2017 Jan 4.
The rising potential for CRISPR-Cas-mediated genome editing has revolutionized our strategies in basic and practical bioengineering research. It provides a predictable and precise method for genome modification in a robust and reproducible fashion. Emergence of systems biotechnology and synthetic biology approaches coupled with CRISPR-Cas technology could change the future of cell factories to possess some new features which have not been found naturally. We have discussed the possibility and versatile potentials of CRISPR-Cas technology for metabolic engineering of a recombinant host for heterologous protein production. We describe the mechanisms involved in this metabolic engineering approach and present the diverse features of its application in biotechnology and protein production.
CRISPR-Cas介导的基因组编辑潜力不断提升,彻底改变了我们在基础和实际生物工程研究中的策略。它以强大且可重复的方式为基因组修饰提供了一种可预测且精确的方法。系统生物技术和合成生物学方法与CRISPR-Cas技术的结合可能会改变细胞工厂的未来,使其具备一些天然未发现的新特性。我们已经讨论了CRISPR-Cas技术用于重组宿主代谢工程以生产异源蛋白的可能性和多种潜力。我们描述了这种代谢工程方法所涉及的机制,并展示了其在生物技术和蛋白质生产中的多样应用特点。