Tissue-specific gene manipulations are widely used in genetically engineered mouse models. A single recombinase system, such as the one using Alb-Cre, has been commonly used for liver-specific genetic manipulations. However, most diseases are complex, involving multiple genetic changes and various cell types. A dual recombinase system is required for conditionally modifying different genes sequentially in the same cell or inducing genetic changes in different cell types within the same organism. A FlpO cDNA was inserted between the last exon and 3'-UTR of the mouse albumin gene in a bacterial artificial chromosome (BAC-Alb-FlpO). The founders were crossed with various reporter mice to examine the efficiency of recombination. Liver cancer tumorigenesis was investigated by crossing the FlpO mice with FSF-Kras(G12D) mice and p53(frt) mice (KPF mice). BAC-Alb-FlpO mice exhibited highly efficient recombination capability in both hepatocytes and intrahepatic cholangiocytes. No recombination was observed in the duodenum and pancreatic cells. BAC-Alb-FlpO-mediated liver-specific expression of mutant Kras(G12D) and conditional deletion of p53 gene caused the development of liver cancer. Remarkably, liver cancer in these KPF mice manifested a distinctive mixed hepatocellular carcinoma and cholangiocarcinoma phenotype. A highly efficient and liver-specific BAC-Alb-FlpO mouse model was developed. In combination with other Cre lines, different genes can be manipulated sequentially in the same cell, or distinct genetic changes can be induced in different cell types of the same organism.NEW & NOTEWORTHY A liver-specific Alb-FlpO mouse line was generated. By coupling it with other existing CreERT or Cre lines, the dual recombinase approach can enable sequential gene modifications within the same cell or across various cell types in an organism for liver research through temporal and spatial gene manipulations.
Albumin promoter-driven FlpO expression induces efficient genetic recombination in mouse liver.
白蛋白启动子驱动的 FlpO 表达可诱导小鼠肝脏中有效的基因重组
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作者:Zhu Xiaohui, Yang Yan, Feng Dongfeng, Wang Oliver, Chen Jiaxiang, Wang Jiale, Wang Bin, Liu Yang, Edenfield Brandy H, Haddock Ashley N, Wang Ying, Patel Tushar, Bi Yan, Ji Baoan
| 期刊: | American Journal of Physiology-Gastrointestinal and Liver Physiology | 影响因子: | 3.300 |
| 时间: | 2024 | 起止号: | 2024 May 1; 326(5):G495-G503 |
| doi: | 10.1152/ajpgi.00263.2023 | 种属: | Mouse |
| 研究方向: | 其它 | ||
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