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  • 型号:GM-J#032051 -Cryorecovery

    应用:These c-Kit Cre-ires-GFP mice, used to trace the lineage of Kit-expressing cardiac cells, express cre recombinase and nuclear-localize EGFP from the mouse Kit (also called c-Kit) promoter. Expression of the targeted Kit gene is eliminated.

    2024-11-09 点击次数:0

    型号:GM-J#032037-JAX -Cryorecovery

    应用:These RCE:loxP mice harbor the R26R CAG-boosted EGFP (RCE) reporter allele with a loxP-flanked STOP cassette upstream of the enhanced green fluorescent protein (EGFP) gene. After removal of the loxP-flanked STOP cassette by cre-mediated recombination, EGFP reporter expression is directed to the cells/tissues dependent upon expression pattern of the promoter driving Cre recombinase.

    2024-11-09 点击次数:0

    型号:GM-J#032036-JAX -Cryorecovery

    应用:These RCE:dual mice harbor the R26R CAG-boosted EGFP reporter allele with both a loxP-flanked STOP cassette and FRT-flanked STOP cassette upstream of the EGFP gene. After removal of the flanked STOP cassettes via cre- and Flp-mediated recombination, the EGFP reporter is expressed in cells/tissues where the expression patterns of the individual promoters driving Cre recombinase and FLP recombinase overlap.

    2024-11-09 点击次数:0

    型号:GM-J#032033-JAX -Cryorecovery

    应用:The SIRT1STOP (or SIRT1-Tg flox-STOP-flox) targeted allele has a floxed-STOP cassette and mouse sirtuin 1 (Sirt1) cDNA sequence inserted into the 3' UTR of the collagen A1 (Col1a1) locus. When bred to mice that express Cre recombinase, offspring will have the floxed-STOP cassette deleted in the cre-expressing tissue(s), resulting in Sirt1 overexpression. These SIRT1STOP (or SIRT1-Tg flox-STOP-flox) mice may be useful for generating conditional mutations for studying the role of sirtuin NAD+-deacetylases in aging, cancer, cellular stress resistance, genomic stability, IGF1 pathways, autoimmunity, inflammation, T cell tolerance, energy metabolism, neurodegeneration, insulin resistance, and diabetes.

    2024-11-09 点击次数:0

    型号:GM-J#032027 -Available

    应用:Advillin-CreERT2 transgenic mice (AvCreERT2) express a tamoxifen-inducible iCre recombinase directed by mouse Avil (advillin) promoter elements. When induced, iCre recombinase activity is observed in dorsal root ganglia and sensory neurons. These mice may have applications in the study of nociception.

    2024-11-09 点击次数:0

    型号:GM-J#031971 -Cryorecovery

    应用:Cre-mediated excision of a floxed Stop in these LSD1 VN mice enables expression of FLAG-tagged human KDM1A (LSD1) cDNA encoding LSD1n isoforms of the gene, as well as an EGFP fluorescent reporter. These mice have been used for chromatin immunoprecipitation (ChIP) analysis.

    2024-11-09 点击次数:0

    型号:GM-J#031970 -Cryorecovery

    应用:Cre-mediated excision of a floxed Stop in these LSD1 WT mice enables expression of FLAG-tagged human KDM1A (LSD1) cDNA encoding LSD1c isoforms of the gene, as well as an EGFP fluorescent reporter. These mice have been used for chromatin immunoprecipitation (ChIP) analysis.

    2024-11-09 点击次数:0

    型号:GM-J#031934 -Cryorecovery

    应用:HSA-MCM mice express tamoxifen-inducible cre in both limb and craniofacial skeletal muscles.

    2024-11-09 点击次数:0

    型号:GM-J#031863 -Cryorecovery

    应用:AadcS250F/S250F mice carry a conserved C890T base pair (S250F amino acid) mutation in the mouse Ddc gene. This mutation corresponds to a human C835T missense mutation associated with infantile Parkinsonism.

    2024-11-09 点击次数:0

    型号:GM-J#031820 -Available

    应用:Tmem119-2A-CreERT2 knock-in mice have the endogenous transmembrane protein 119 (Tmem119) promoter/enhancer sequences directing expression of tamoxifen-inducible Cre recombinase primarily in microglia, and are also designed to retain endogenous Tmem119 expression. These mice allow specific and inducible genetic manipulations in vivo for studying the function of resident microglia in the central nervous system during neuroinflammatory and neurological disease/injury, and may also be useful for investigating bone development, osteoblast differentiation and osteosarcoma.

    2024-11-09 点击次数:0
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