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  • 型号:GM-J#029594 -Not Available At Jax

    应用:Stock No. 029594 has been discontinued. We recommend B6.Cg-Tg(Dmp1-cre/ERT2)0022Pdp/IkalJ (Stock No. 032757) as a replacement.

    2024-11-09 点击次数:0

    型号:GM-J#029588 -Cryorecovery

    应用:Ntng2-IRES2-Cre-D knock-in mice are designed to have Cre recombinase expression directed to netrin G2-expressing Cre recombinase expression and activity largely recapitulates the endogenous Ntng2 gene - it is enriched in claustrum but relatively sparse in nearby structures (anterior dorsal nucleus, taenia tecta and endopiriform nucleus). These mice may be used to generate conditional mutations for studying gain-or-loss of function and/or fate mapping related to this netrin G protein, such as axon guidance.

    2024-11-09 点击次数:0

    型号:GM-J#029587 -Cryorecovery

    应用:Gnb4-IRES2-Cre-D knock-in mice are designed to have Cre recombinase expression directed to guanine nucleotide binding protein (G protein) beta 4-expressing cells. Cre recombinase expression and activity largely recapitulates the endogenous Gnb4 gene - it is enriched in claustrum but relatively sparse in nearby structures (endopiriform nucleus and deep insular cortex). These mice may be used to generate conditional mutations for studying gain-or-loss of function and/or fate mapping related to this G protein.

    2024-11-09 点击次数:0

    型号:GM-J#029582 -Cryorecovery

    应用:This CRISPR/Cas9 generated mutant of the Trpv4 gene carries a cre/ERT2 knock-in mutation.

    2024-11-09 点击次数:0

    型号:GM-J#029575 -Cryorecovery

    应用:These Hmga2CK mice possess pairs of variant loxP sites on either side of exon 2 and a SA-GFP-SD cassette (in reverse orientation) in intron 2 of the Hmga2 gene. Cre-recombination puts GFP under the control of all of the endogenous regulatory elements of endogenous Hmga2 (while also creating a null allele). Applications may include growth, development, transcriptional regulation and cancer metastasis.

    2024-11-09 点击次数:0

    型号:GM-J#029567 -Available

    应用:This Col1a2 Cre-ER mutant mouse strain carries a transgene with tamoxifen inducible Cre recombinase and may be useful for generating fibroblast specific targeted mutants for studies of fibrotic diseases, wound healing and connective tissue physiology, as well as fibroblast lineage fate mapping.

    2024-11-09 点击次数:0

    型号:GM-J#029566 -Cryorecovery

    应用:These Isl1 MerCreMer knock-in mice express a tamoxifen-inducible cre recombinase from the endogenous promoter/enhancer elements of the Isl1 gene. When induced, cre activity is observed in Isl1 expressing cells in embryos. These mice may be useful for generating conditional mutations for studying cell lineages during development of the nervous system, heart, pituitary gland, pancreas and stomach.

    2024-11-09 点击次数:0

    型号:GM-J#029498 -Cryorecovery

    应用:This CRISPR/Cas9 generated mutant of the Gfra3 gene carries a cre/ERT2 knock-in mutation.

    2024-11-09 点击次数:0

    型号:GM-J#029490 -Cryorecovery

    应用:The doxycycline-regulated Nkx2.5 enhancer-eGFP/Cre transgenic mice have the cardiac-specific mouse NK2 homeobox 5 promoter/enhancer sequences directing dox-controllable expression of eGFP/Cre fusion protein to early heart progenitor cells (cardiomyoblasts) from embryonic day (E)7.5-E11.5. These Nkx2.5 enh-GFP-Cre transgenic mice allow Nkx2.5+ cardiomyoblast fluorescent labeling (cell isolation by FACS) and lineage tracing in a doxycycline-regulated fashion.

    2024-11-09 点击次数:0

    型号:GM-J#029486 -Cryorecovery

    应用:The RC::FrePe dual-recombinase responsive fluorescent allele has a frt-flanked STOP and loxP-flanked mCherry::STOP all preventing transcription of eGFP. FLP recombinase results in mCherry fluorescence, and further exposure to Cre recombinase results in eGFP fluorescence in the overlapping populations. The RC::FrePe allele and its derivatives are useful for fluorescent labeling of cells/tissues in embryonic or adult mice. These mice allow intersectional genetic fate mapping of different cell subpopulations defined by the overlap of two gene expression domains.

    2024-11-09 点击次数:0
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