Sreekanth Vedagopuram, Zhou Qingxuan, Kokkonda Praveen, Bermudez-Cabrera Heysol C, Lim Donghyun, Law Benjamin K, Holmes Benjamin R, Chaudhary Santosh K, Pergu Rajaiah, Leger Brittany S, Walker James A, Gifford David K, Sherwood Richard I, Choudhary Amit
Chemical Biology and Therapeutics Science Program, Broad Institute of MIT and Harvard, Cambridge, Massachusetts 02142, United States.
Divisions of Renal Medicine and Engineering, Brigham and Women's Hospital, Boston, Massachusetts 02115, United States.
ACS Cent Sci. 2020 Dec 23;6(12):2228-2237. doi: 10.1021/acscentsci.0c00129. Epub 2020 Nov 18.
Prolonged Cas9 activity can hinder genome engineering as it causes off-target effects, genotoxicity, heterogeneous genome-editing outcomes, immunogenicity, and mosaicism in embryonic editing-issues which could be addressed by controlling the longevity of Cas9. Though some temporal controls of Cas9 activity have been developed, only cumbersome systems exist for modifying the lifetime. Here, we have developed a chemogenetic system that brings Cas9 in proximity to a ubiquitin ligase, enabling rapid ubiquitination and degradation of Cas9 by the proteasome. Despite the large size of Cas9, we were able to demonstrate efficient degradation in cells from multiple species. Furthermore, by controlling the Cas9 lifetime, we were able to bias the DNA repair pathways and the genotypic outcome for both templated and nontemplated genome editing. Finally, we were able to dosably control the Cas9 activity and specificity to ameliorate the off-target effects. The ability of this system to change the Cas9 lifetime and, therefore, bias repair pathways and specificity in the desired direction allows precision control of the genome editing outcome.
Cas9的长时间活性会阻碍基因组工程,因为它会导致脱靶效应、基因毒性、异质基因组编辑结果、免疫原性以及胚胎编辑中的嵌合现象,而这些问题可以通过控制Cas9的寿命来解决。尽管已经开发了一些对Cas9活性的时间控制方法,但用于改变其寿命的系统却很繁琐。在此,我们开发了一种化学遗传系统,该系统使Cas9与泛素连接酶靠近,从而使蛋白酶体能够快速对Cas9进行泛素化和降解。尽管Cas9体积庞大,我们仍能够在多个物种的细胞中证明其有效降解。此外,通过控制Cas9的寿命,我们能够使模板化和非模板化基因组编辑的DNA修复途径和基因型结果产生偏向。最后,我们能够通过剂量控制Cas9的活性和特异性来改善脱靶效应。该系统改变Cas9寿命的能力,进而在期望的方向上使修复途径和特异性产生偏向,从而实现对基因组编辑结果的精确控制。