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Efficient base editing for multiple genes and loci in pigs using base editors.

Jingke Xie | Weikai Ge | Nan Li | Qishuai Liu | Fangbing Chen | Xiaoyu Yang | Xingyun Huang | Zhen Ouyang | Quanjun Zhang | Yu Zhao | Zhaoming Liu | Shixue Gou | Han Wu | Chengdan Lai | Nana Fan | Qin Jin | Hui Shi | Yanhui Liang | Ting Lan | Longquan Quan | Xiaoping Li | Kepin Wang | Liangxue Lai
Nature communications | 2019

Cytosine base editors (CBEs) enable programmable C-to-T conversion without DNA double-stranded breaks and homology-directed repair in a variety of organisms, which exhibit great potential for agricultural and biomedical applications. However, all reported cases only involved C-to-T substitution at a single targeted genomic site. Whether C-to-T substitution is effective in multiple sites/loci has not been verified in large animals. Here, by using pigs, an important animal for agriculture and biomedicine, as the subjective animal, we showed that CBEs could efficiently induce C-to-T conversions at multiple sites/loci with the combination of three genes, including DMD, TYR, and LMNA, or RAG1, RAG2, and IL2RG, simultaneously, at the embryonic and cellular levels. CBEs also could disrupt genes (pol gene of porcine endogenous retrovirus) with dozens of copies by introducing multiple premature stop codons. With the CBEs, pigs carrying single gene or multiple gene point mutations were generated through embryo injection or nuclear transfer approach.

Pubmed ID: 31253764

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

  • Agency: National Natural Science Foundation of China (National Science Foundation of China), International
    Id: 81702115
  • Agency: Ministry of Science and Technology of the People's Republic of China (Chinese Ministry of Science and Technology), International
    Id: 2017YFA0105103
  • Agency: Guangzhou Municipal Science and Technology Project, International
    Id: 201704030034

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Thermo Fisher Scientific (tool)

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