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 PMID:17218265  

Manipulating the mouse genome to engineer precise functional syntenic replacements with human sequence.

Helen A C Wallace | Fatima Marques-Kranc | Melville Richardson | Francisco Luna-Crespo | Jackie A Sharpe | Jim Hughes | William G Wood | Douglas R Higgs | Andrew J H Smith
Cell | 2007

We have devised a strategy (called recombinase-mediated genomic replacement, RMGR) to allow the replacement of large segments (>100 kb) of the mouse genome with the equivalent human syntenic region. The technique involves modifying a mouse ES cell chromosome and a human BAC by inserting heterotypic lox sites to flank the proposed exchange interval and then using Cre recombinase to achieve segmental exchange. We have demonstrated the feasibility of this approach by replacing the mouse alpha globin regulatory domain with the human syntenic region and generating homozygous mice that produce only human alpha globin chains. Furthermore, modified ES cells can be used iteratively for functional studies, and here, as an example, we have used RMGR to produce an accurate mouse model of human alpha thalassemia. RMGR has general applicability and will overcome limitations inherent in current transgenic technology when studying the expression of human genes and modeling human genetic diseases.

Pubmed ID: 17218265

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Associated grants

  • Agency: Medical Research Council, United Kingdom
    Id: MC_U137961144
  • Agency: Medical Research Council, United Kingdom
    Id: MC_U137961145

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Primer Express (tool)

RRID:SCR_014326

Software that allows users to manually or automatically design custom primers and probes for gene quantitation and allelic discrimination (SNP) real-time PCR applications. It supports assays based on TaqMan and SYBR Green I dye chemistries.

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