ArticleBiotechnology letters2022
Adenine base-editing-mediated exon skipping induces gene knockout in cultured pig cells.
Article in Biotechnology letters, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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Who cites it
12 citing papers in PubMed, 14 citations in OpenAlex.
- Article
- Cytosine base editor-mediated high-efficiency myostatin editing in Hu sheep.Functional & integrative genomics · 2025Article
- The pig as a medical model for gynecological diseases: an applied perspective.Frontiers in veterinary science · 2025Review
- SPLICER: a highly efficient base editing toolbox that enables in vivo therapeutic exon skipping.Nature communications · 2024Article
- Production of a heterozygous exon skipping model of common marmosets using gene-editing technology.Lab animal · 2024Article
- ABE-ultramax for high-efficiency biallelic adenine base editing in zebrafish.Nature communications · 2024Article
- Genome editing: An insight into disease resistance, production efficiency, and biomedical applications in livestock.Functional & integrative genomics · 2024Review
- Gene editing in livestock: innovations and applications.Animal reproduction · 2024Article
- The history, use, and challenges of therapeutic somatic cell and germline gene editing.Fertility and sterility · 2023Review
- Production of MSTN knockout porcine cells using adenine base-editing-mediated exon skipping.In vitro cellular & developmental biology. Animal · 2023Article
- Application of Gene Editing Technology in Resistance Breeding of Livestock.Life (Basel, Switzerland) · 2022Review
- Advance of genetically modified pigs in xeno-transplantation.Frontiers in cell and developmental biology · 2022Review
Corrections and comments
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Authors and funding
15 authors at 3 institutions in 2 countries.
Funding
Abstract
Gene-knockout pigs have important applications in agriculture and medicine. Compared with CRISPR/Cas9, Adenine base editor (ABE) convert single A·T pairs to G·C pairs in the genome without generating DNA double-strand breaks, and this method has higher accuracy and biosafety in pig genetic modification. However, the application of ABE in pig gene knockout is limited by protospacer-adjacent motif sequences and the base-editing window. Alternative mRNA splicing is an important mechanism underlying the formation of proteins with diverse functions in eukaryotes. Spliceosome recognizes the conservative sequences of splice donors and acceptors in a precursor mRNA. Mutations in these conservative sequences induce exon skipping, leading to proteins with novel functions or to gene inactivation due to frameshift mutations. In this study, adenine base-editing-mediated exon skipping was used to expand the application of ABE in the generation of gene knockout pigs. We first constructed a modified "all-in-one" ABE vector suitable for porcine somatic cell transfection that contained an ABE for single-base editing and an sgRNA expression cassette. The "all-in-one" ABE vector induced efficient sgRNA-dependent A-to-G conversions in porcine cells during single base-editing of multiple endogenous gene loci. Subsequently, an ABE system was designed for single adenine editing of the conservative splice acceptor site (AG sequence at the 3' end of the intron 5) and splice donor site (GT sequence at the 5' end of the intron 6) in the porcine gene GHR; this method achieved highly efficient A-to-G conversion at the cellular level. Then, porcine single-cell colonies carrying a biallelic A-to-G conversion in the splice acceptor site in the intron 5 of GHR were generated. RT-PCR indicated exon 6 skipped at the mRNA level. Western blotting revealed GHR protein loss, and gene sequencing showed no sgRNA-dependent off-target effects. These results demonstrate accurate adenine base-editing-mediated exon skipping and gene knockout in porcine cells. This is the first proof-of-concept study of adenine base-editing-mediated exon skipping for gene regulation in pigs, and this work provides a new strategy for accurate and safe genetic modification of pigs for agricultural and medical applications.
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