Strain Information | |
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Image | |
BRC No. | RBRC04874 |
Type | Targeted Mutation![]() |
Species | Mus musculus |
Strain name | C57BL/6N-Gt(ROSA)26Sor<tm1(CAG-EGFP/tDsRed)Utr>/Rbrc |
Former Common name | |
H-2 Haplotype | |
ES Cell line | B6N-22<UTR> [C57BL/6NCrlCrlj] |
Background strain | C57BL/6NCrlCrlj |
Appearance | |
Strain development | Developed by Laboratory Animal Resource Center, University of Tsukuba and RIKEN BioResource Center in 2011. B6N-22<Ttr> ES cells were used. C57BL/6N background. |
Strain description | R26GRR knock-in mice. A construct consisting of the EGFP-tdsRed (tandem version of dimeric DsRed) under the control of the CAG promoter, was inserted via homologous recombination into the intron between exons1 and 2 of the ROSA26 locus. |
Colony maintenance | Homozygote x Homozygote [or Crossing to C57BL/6NCrl] |
References | Novel ROSA26 Cre-reporter knock-in C57BL/6N mice exhibiting green emission before and red emission after Cre-mediated recombination. Hasegawa Y, Daitoku Y, Sekiguchi K, Tanimoto Y, Mizuno-Iijima S, Mizuno S, Kajiwara N, Ema M, Miwa Y, Mekada K, Yoshiki A, Takahashi S, Sugiyama F, Yagami K Exp. Anim., 62, 295-304 (2013). 24172193Generation of a Gal4-dependent gene recombination and illuminating mouse. Masaharu Yoshihara, Teppei Nishino, Naoto Sambe, Takahiro Nayakama, Freddy Radtke, Seiya Mizuno, Satoru Takahashi Exp. Anim., 71(3), 385-390 (2022). 35444103Analysis of Notch1 signaling in mammalian sperm development. Naoto Sambe, Masaharu Yoshihara, Teppei Nishino, Ryosuke Sugiura, Takahiro Nakayama, Chandra Louis, Satoru Takahashi BMC Res. Notes 16(1) 109 (2023). 37337280Notch1 signaling is limited in healthy mature kidneys in vivo. Ryosuke Sugiura, Takahiro Nakayama, Teppei Nishino, Naoto Sambe, Freddy Radtke, Masaharu Yoshihara, Satoru Takahashi BMC Res. Notes 16(1) 54 (2023). 37069662 |
Health Report | |
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Examination Date / Room / Rack | 2025/01/07Room:3-BRack:FSentinel mouse program 2024/10/07Room:3-BRack:FSentinel mouse program 2024/07/08Room:3-BRack:FSentinel mouse program 2024/04/08Room:3-BRack:FSentinel mouse program 2024/01/09Room:3-BRack:FSentinel mouse program 2023/10/10Room:3-BRack:FSentinel mouse program 2023/07/10Room:3-BRack:FSentinel mouse program 2023/04/10Room:3-BRack:FSentinel mouse program |
Gene | |||||||
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Gene Symbol | Gene Name | Chr. | Allele Symbol | Allele Name | Common Names | Promoter | Diseases Related to This Gene |
EGFP | Enhanced Green Fluorescent Protein (Aequorea victoria) | 6 | EGFP | CAG promoter (CMV-IE enhancer, chicken beta-actin promoter, rabbit beta-globin genomic DNA) | |||
FLAG | FLAG tag (synthetic) | 6 | FLAG | ||||
Frt | yeast FRT (flippase recombination target) site | 6 | Frt | ||||
Frt | yeast FRT (flippase recombination target) site | 6 | Frt | ||||
Gt(ROSA26)Sor MGI:104735 | gene trap ROSA 26, Philippe Soriano | 6 | Gt(ROSA26)Sor<tm1(CAG-EGFP/DsRed)Utr> | targeted mutation 1 (CAG-EGFP/DsRed), University of Tsukuba Laboratory Animal Resource Center | |||
loxP | phage P1 loxP | 6 | loxP | ||||
loxP | phage P1 loxP | 6 | loxP | ||||
neo | neomycin resistance gene (E. coli) | 6 | mouse Phosphoglycerate kinase promoter (PGK promoter), phage T7 gb2 promoter | ||||
tDsRed | Red Fluorescent Protein (Discosoma sp.) | 6 | tDsRed | ||||
SV40 polyA | 6 |
Phenotype | |
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Annotation by Mammalian phenotyhpe ontology | |
Detailed phenotype data |
Ordering Information | |
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Donor DNA | Rosa gene (ubiquitous) (mouse), CMV IE enhancer (cytomegalovirus), beta-actin promoter (chicken), beta-globin genomic DNA (rabbit), EGFP (jellyfish), DsRed (red flourescent protein from Discosoma sp.) cDNA, PGK promoter (mouse), neomycin resistance gene (E. coli), polyA additional signal (mouse), FRT sites (yeast), loxP sites (P1 phage), phage T7 gb2 promoter(synthetic), polyA (SV40), FLAG tag (synthetic) |
Research application | Cre/loxP system FLP/frt system Fluorescent Proteins/lacZ System |
Specific Term and Conditions | In publishing the research results to be obtained by use of the BIOLOGICAL RESOURCE, an acknowledgment to Dr. Ken-ichi Yagami, Laboratory Animal Resource Center, University of Tsukuba and RIKEN BioResource Center is requested. 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. Exp Anim 62, 295-304 (2013). The availability of the BIOLOGICAL RESOURCE is limited to a RECIPIENT of a not-for profit institution for a not-for-profit research. For use of the BIOLOGICAL RESOURCE by a for-profit institution, the RECIPIENT must reach agreement on terms and conditions of use of it with DEPOSITOR and must obtain a prior written consent from the DEPOSITOR. RECIPIENT must contact the DEPOSITOR in the case of application for any patents or commercial use based on the results from the use of the BIOLOGICAL RESOURCE. |
Depositor | RIKEN BRC (RIKEN BRC) |
Strain Status | ![]() ![]() ![]() |
Strain Availability | Cryopreserved sperm (within 1 month) Cryopreserved embryos (within 1 month) Live mouse (1 to 3 months) |
Additional Info. | Necessary documents for ordering:
Genotyping protocol -PCR- Mouse of the Month Mar 2014, Mouse of the Month Oct 2018 |
BRC mice in Publications |
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Morikawa K, Nagasaki A, Sun L, Kawase E, Ebihara T, Shirayoshi Y. Optogenetic control of early embryos labeling using photoactivatable Cre recombinase 3.0. FEBS Open Bio 14(11) 1888-1898(2024) 39223831 |
Mizoguchi A, Banno R, Sun R, Yaginuma H, Taki K, Kobayashi T, Sugiyama M, Tsunekawa T, Onoue T, Takagi H, Hagiwara D, Ito Y, Iwama S, Suga H, Nagai T, Yamada K, Arima H. Glucocorticoid receptor signaling in ventral tegmental area neurons increases the rewarding value of a high-fat diet in mice. Sci Rep 11(1) 12873(2021) 34145364 |
Hashimoto M, Sasaki H. Epiblast Formation by TEAD-YAP-Dependent Expression of Pluripotency Factors and Competitive Elimination of Unspecified Cells. Dev Cell 50(2) 139-154.e5(2019) 31204175 |
Tsunekawa T, Banno R, Yaginuma H, Taki K, Mizoguchi A, Sugiyama M, Onoue T, Takagi H, Hagiwara D, Ito Y, Iwama S, Goto M, Suga H, Bettler B, Arima H. GABAB Receptor Signaling in the Mesolimbic System Suppresses Binge-like Consumption of a High-Fat Diet. iScience 20 337-347(2019) 31610370 |
Matsumoto L, Hirota Y, Saito-Fujita T, Takeda N, Tanaka T, Hiraoka T, Akaeda S, Fujita H, Shimizu-Hirota R, Igaue S, Matsuo M, Haraguchi H, Saito-Kanatani M, Fujii T, Osuga Y. HIF2α in the uterine stroma permits embryo invasion and luminal epithelium detachment. J Clin Invest 128(7) 3186-3197(2018) 29911998 |
Shibata M, Banno R, Sugiyama M, Tominaga T, Onoue T, Tsunekawa T, Azuma Y, Hagiwara D, Lu W, Ito Y, Goto M, Suga H, Sugimura Y, Oiso Y, Arima H. AgRP Neuron-Specific Deletion of Glucocorticoid Receptor Leads to Increased Energy Expenditure and Decreased Body Weight in Female Mice on a High-Fat Diet. Endocrinology 157(4) 1457-66(2016) 26889940 |
Hiraoka T, Hirota Y, Saito-Fujita T, Matsuo M, Egashira M, Matsumoto L, Haraguchi H, Dey SK, Furukawa KS, Fujii T, Osuga Y. STAT3 accelerates uterine epithelial regeneration in a mouse model of decellularized uterine matrix transplantation. JCI Insight 1(8) (2016) 27358915 |