Adenomatous polyposis coli (APC) mutations are the most frequently identified genetic alteration in sporadic colorectal cancer (CRC) cases, and a myriad of genetically engineered Apc-mutant CRC mouse models have been developed using various genetic manipulation techniques. The advent of the CRISPR/Cas9 system has revolutionized the field of genetic engineering and facilitated the development of new genetically engineered mouse models. In this study, we aimed to develop a novel Apc knockout allele using the CRISPR/Cas9 system and evaluate the phenotypic effects of this new allele in two different mouse strains. For this purpose, exon 16 of mouse Apc gene was targeted with a single-guide RNA, and the mouse carrying an Apc frameshift mutation at codon 750 (Î750) was chosen as the founder. The mutant FVB-Apc(Î750) mice were backcrossed with wild-type C57BL/6 mice, and the phenotypic effects of the knockout allele were evaluated in F8-FVB-Apc(Î750), F4-B6;FVB-Apc(Î750), and F1-B6;FVB-Apc(Î750) by a macroscopic and microscopic examination of the gastrointestinal system. The result showed that the mean polyp number was significantly higher in F4-BL6;FVB-Apc(Î750) than in F8-FVB-Apc(Î750). Intestinal polyposis was more prominent in F4-BL6;FVB-Apc(Î750), whereas a higher number of colon polyps than intestinal polyps were observed in F8-FVB-Apc(Î750). Additionally, F1-BL6;FVB-Apc(Î750) mixed background mice developed gastric polyps that morphologically resembled the pyloric gland adenoma of humans. In conclusion, we developed a novel CRISPR-mediated Apc knockout allele using two mouse strains. We showed that this allele can exert a strain-specific effect on the phenotype of mice and can cause gastric polyp formation.
A new CRISPR-mediated Apc knockout allele leads to pyloric gland adenoma-like gastric polyps in mice with C57BL/6;FVB/N mixed background.
一种新的 CRISPR 介导的 Apc 敲除等位基因导致 C57BL/6;FVB/N 混合背景的小鼠出现幽门腺腺瘤样胃息肉
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作者:Uzun Sarp, Ãzcan Ãzge, Gök AyÅenur, IÅık Aynur, Bakır Sinem, Günel-Ãzcan AyÅen, OnbaÅılar İlyas, Akyol Aytekin
| 期刊: | Animal Models and Experimental Medicine | 影响因子: | 3.400 |
| 时间: | 2025 | 起止号: | 2025 May;8(5):922-929 |
| doi: | 10.1002/ame2.70002 | 研究方向: | 肿瘤 |
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