An innovative approach using CRISPR-ribonucleoprotein packaged in virus-like particles to generate genetically engineered mouse models

  • Jeong, Tae Yeong; 
  • Yoon, Da Eun; 
  • Kim, Sol Pin; 
  • Yang, Jiyun; 
  • Lim, Soo-Yeon; 
  • ... Kim, Hyeon Soo; 
  • 외 12명
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초록

Genetically engineered mouse models (GEMMs) are crucial for investigating disease mechanisms, developing therapeutic strategies, and advancing fundamental biological research. While CRISPR gene editing has greatly facilitated the creation of these models, existing techniques still present technical challenges and efficiency limitations. Here, we establish a CRISPR-VLP-induced targeted mutagenesis (CRISPR-VIM) strategy, enabling precise genome editing by co-culturing zygotes with virus-like particle (VLP)-delivered gene editing ribonucleoproteins (RNPs) without requiring physical manipulation or causing cellular damage. We generate Plin1- and Tyr-knockout mice through VLP-based SpCas9 or adenine base editor (ABE)/sgRNA RNPs and characterize their phenotype and germline transmission. Additionally, we demonstrate cytosine base editor (CBE)/sgRNA-based C-to-T substitution or SpCas9/sgRNA-based knock-in using VLPs. This method further simplifies and accelerates GEMM generation without specialized techniques or equipment. Consequently, the CRISPR-VIM method can facilitate mouse modeling and be applied in various research fields.

키워드

Adenine; Cytosine; Crispr Associated Endonuclease Cas9; Esterase; Crispr-associated Protein 9; Ribonucleoproteins; Rna, Guide, Crispr-cas Systems; Adenine; Cytosine; Ribonucleoprotein; Crispr Associated Endonuclease Cas9; Crispr-cas System Guide Rna; Disease Severity; Gene Expression; Genetic Engineering; Genome; Phenotype; Protein; Rodent; Virus Particle; Animal Cell; Animal Experiment; Animal Model; Article; Blastocyst; Cell Damage; Clustered Regularly Interspaced Short Palindromic Repeat; Coculture; Codon; Controlled Study; Crispr-cas9 System; Cytotoxicity; Embryo; Embryo Development; Female; Fertilization; Gene Editing; Genetically Engineered Mouse Strain; Genotype; Genotyping; High Throughput Sequencing; Immunohistochemistry; In Vitro Fertilization; Kernicterus; Knockout Mouse; Male; Microinjection; Mouse; Mouse Embryo; Mouse Embryonic Stem Cell; Murine Leukemia Virus; Mutagenesis; Mutation Rate; Nonhuman; Perivitelline Space; Sanger Sequencing; Surrogate Mother; Virus Like Agent; White Adipose Tissue; Zona Pellucida; Zygote; Animal; C57bl Mouse; Crispr Cas System; Gene Knock-in; Genetics; Metabolism; Procedures; Virion; Animals; Crispr-associated Protein 9; Crispr-cas Systems; Female; Gene Editing; Gene Knock-in Techniques; Genetic Engineering; Male; Mice; Mice, Inbred C57bl; Mice, Knockout; Ribonucleoproteins; Rna, Guide, Crispr-cas Systems; Virion; CAS9 PROTEIN; GENOMIC DNA; TARGET BASE; EFFICIENT; ELECTROPORATION; DELIVERY; MICE; MUTAGENESIS; PERILIPIN; CELLS
제목
An innovative approach using CRISPR-ribonucleoprotein packaged in virus-like particles to generate genetically engineered mouse models
저자
Jeong, Tae Yeong; Yoon, Da Eun; Kim, Sol Pin; Yang, Jiyun; Lim, Soo-Yeon; Ok, Sungjin; Ju, Sungjin; Park, Jeongeun; Lee, Su Bin; Park, Soo-Ji; Kim, Sanghun; Lee, Hyunji; Lee, Daekee; Kang, Soo Kyung; Lee, Seung Eun; Kim, Hyeon Soo; Seong, Je Kyung; Kim, Kyoungmi
DOI
10.1038/s41467-025-58364-7
발행일
2025-04-11
유형
Article
저널명
Nature Communications
권
16
호
1