,Effective gene editing by high-fidelity base editor 2 in mouse zygotes

来源 :蛋白质与细胞 | 被引量 : 0次 | 上传用户:wangliubaobao
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Targeted point mutagenesis through homologous recombination has been widely used in genetic studies and holds considerable promise for repairing diseasecausing mutations in patients.However,problems such as mosaicism and low mutagenesis efficiency continue to pose challenges to clinical application of such approaches.Recently,a base editor (BE) system built on cytidine (C) deaminase and CRISPR/Cas9 technology was developed as an alteative method for targeted point mutagenesis in plant,yeast,and human cells.Base editors convert C in the deamination window to thymidine (T) efficiently,however,it remains unclear whether targeted base editing in mouse embryos is feasible.In this report,we generated a modified highfidelity version of base editor 2 (HF2-BE2),and investigated its base editing efficacy in mouse embryos.We found that HF2-BE2 could convert C to T efficiently,with up to 100% biallelic mutation efficiency in mouse embryos.Unlike BE3,HF2-BE2 could convert C to T on both the target and non-target strand,expanding the editing scope of base editors.Surprisingly,we found HF2-BE2 could also deaminate C that was proximal to the gRNA-binding region.Taken together,our work demonstrates the feasibility of generating point mutations in mouse by base editing,and underscores the need to carefully optimize base editing systems in order to eliminate proximal-site deamination.
其他文献
麦套地膜棉有利早熟双增宋沛文山东省农业厅济南市解放路250013麦套棉晚发迟熟一直是影响其产量和品质的重要问题,并制约着麦棉两熟增产潜力的发挥。1989年10月上旬,农业部棉花专家顾问组在
中熟高产抗病新品种鲁玉12号鲁玉12号是山东省农科院原子能所以新选系鲁原133作母本,8112作父本杂交育成的玉米新杂交种,1993年由山东省农作物品种审定委员会审定命名。鲁玉12号是一个中熟、高产
第一家中文日报为《上海新报》,创刊于清咸丰十一年十一月(1861年12月),比《申报》早十年。第一家西文日报为《上海每日时报》,创刊于清咸丰十一年八月十一日(1861年9月15日
Non-alcoholic fatty liver disease (NAFLD) is an epidemic metabolic condition driven by an underlying lipid homeostasis disorder.The lipid droplet (LD),the main
我国是甜瓜消费大国,在潮湿炎热的夏季,甜瓜正处于坐果期,很容意感染白粉病,大面积感染白粉病造成甜瓜绝产的新闻已屡见不鲜,化学防治使白粉菌产生耐药性且污染环境,违背了绿