Strain Information | |
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Image | |
BRC No. | RBRC02096 |
Type | Transgene Congenic |
Species | Mus musculus |
Strain name | B6.Cg-Tg(CAG-floxed Neo-EGFP)REP08Osb |
Former Common name | REP-08 |
H-2 Haplotype | |
ES Cell line | D3 [129S2/SvPas] |
Background strain | C57BL/6 |
Appearance | black [a/a B/B C/C] |
Strain development | Developed by Masato Ikawa, Faculty of Pharmaceutical Sciences, Osaka University in 2004. The transgene was injected into the D3 ES cells. The mutant mice were crossed to C57BL/6NCrSlc. |
Strain description | CAG-GFP conditional transgenic mice (REP08 mice). The transgene consists of the CAG promoter and the EGFP cDNA separated by a floxed neo cassette. When the floxed neo cassette is excised by crossing with Cre mice, EGFP is expressed. The transgene was injected into D3 ES cells to generate mice having a single copy of the transgene. The level of GFP fluorescence is relatively low (Developer, personal communication). |
Colony maintenance | Carrier x Carrier [C57BL/6NCrSlc] |
References | Lineage-specific cell disruption in living mice by Cre-mediated expression of diphtheria toxin A chain. Matsumura H, Hasuwa H, Inoue N, Ikawa M, Okabe M Biochem. Biophys. Res. Commun., 321, 275-279 (2004). 15358172 |
Health Report | |
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Examination Date / Room / Rack |
Gene | |||||||
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Gene Symbol | Gene Name | Chr. | Allele Symbol | Allele Name | Common Names | Promoter | Diseases Related to This Gene |
GFP | Green Fluorescent Protein (Aequorea victoria) | UN | CAG promoter (CMV-IE enhancer, chicken beta-actin promoter, rabbit beta-globin genomic DNA) | ||||
loxP | phage P1 loxP | UN | loxP | ||||
loxP | phage P1 loxP | UN | loxP | ||||
neo | neomycin resistance gene (E. coli) | UN | CAG promoter (CMV-IE enhancer, chicken beta-actin promoter, rabbit beta-globin genomic DNA) |
Phenotype | |
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Annotation by Mammalian phenotyhpe ontology | |
Detailed phenotype data |
Ordering Information | |
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Donor DNA | CAG promoter (CMV-IE enhancer, chicken beta-actin promoter, rabbit beta-globin genomic DNA), phage P1 loxP sites, E. coli neo, pA, Jellyfish GFP cDNA |
Research application | Cre/loxP system Fluorescent Proteins/lacZ System General Purpose |
Specific Term and Conditions | The RECIPIENT of BIOLOGICAL RESOURCE shall obtain a prior written consent on use of it from the DEPOSITOR. In publishing the research results obtained by use of the BIOLOGICAL RESOURCE, a citation of the following literature(s) designated by the DEPOSITOR is requested. Biochem Biophys Res Commun., 321, 275-279 (2004).RECIPIENT which wants to use the BIOLOGICAL RESOURCE for the purpose other than education or not-for-profit research is requested to enter into a Material Transfer Agreement with Osaka University (https://www.ccb.osaka-u.ac.jp/en/). The RECIPIENT must contact the DEPOSITOR in the case of application for any patents or commercial use based on the results from the BIOLOGICAL RESOURCES. The RECIPIENT which wants to use the BIOLOGICAL RESOURCE even after five years must obtain a written consent from the DEPOSITOR again. |
Depositor | Masaru Okabe (Osaka University) |
Strain Status | Frozen embryos Frozen sperm |
Strain Availability | Recovered litters from cryopreserved embryos (2 to 4 months) Cryopreserved sperm (within 1 month) Cryopreserved embryos (within 1 month) |
Additional Info. | Necessary documents for ordering:
Genotyping protocol -PCR- |
BRC mice in Publications |
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Miyoshi K, Yanagi S, Kawahara K, Nishio M, Tsubouchi H, Imazu Y, Koshida R, Matsumoto N, Taguchi A, Yamashita S, Suzuki A, Nakazato M. Epithelial Pten controls acute lung injury and fibrosis by regulating alveolar epithelial cell integrity. Am J Respir Crit Care Med 187(3) 262-75(2013) 23239155 |
Kobayashi N, Miyoshi S, Mikami T, Koyama H, Kitazawa M, Takeoka M, Sano K, Amano J, Isogai Z, Niida S, Oguri K, Okayama M, McDonald JA, Kimata K, Taniguchi S, Itano N. Hyaluronan deficiency in tumor stroma impairs macrophage trafficking and tumor neovascularization. Cancer Res 70(18) 7073-83(2010) 20823158 |
Maeda K, Kobayashi Y, Udagawa N, Uehara S, Ishihara A, Mizoguchi T, Kikuchi Y, Takada I, Kato S, Kani S, Nishita M, Marumo K, Martin TJ, Minami Y, Takahashi N. Wnt5a-Ror2 signaling between osteoblast-lineage cells and osteoclast precursors enhances osteoclastogenesis. Nat Med 18(3) 405-12(2012) 22344299 |
Tamaki T, Uchiyama Y, Okada Y, Tono K, Masuda M, Nitta M, Hoshi A, Akatsuka A. Clonal differentiation of skeletal muscle-derived CD34(-)/45(-) stem cells into cardiomyocytes in vivo. Stem Cells Dev 19(4) 503-12(2010) 19634996 |