Strain Data Sheet

RBRC02095

Strain Information

Image
BRC No.RBRC02095
TypeTransgene CongenicCartagena
SpeciesMus musculus
Strain nameB6.B6D2-Tg(Th-EGFP)21-31Koba
Former Common nameB6.Cg-Tg(TH-GFP)21-31
H-2 Haplotype
ES Cell line
Background strainC57BL/6JJcl
Appearanceblack [a/a B/B C/C]
Strain development福島県立医科大学医学部・小林和人先生(1998)。B6D2F2受精卵へインジェクションにより作出。C57BL/6Jに戻し交配された。2ラインあり。RBRC02095(メインライン)、RBRC03162。
Strain descriptionラットチロシン水酸化酵素 (TH) 遺伝子プロモーターに、オワンクラゲ緑色蛍光タンパク質 (GFP) 遺伝子を接続した導入遺伝子を持つ。Tgマウスは脳内および末梢器官のカテコールアミン合成細胞がGFPにより標識される。ホモマウスは致死 (原因は不明) 。
Colony maintenanceCarrier x Noncarrier [C57BL/6JJcl]
References
Dynamics of tyrosine hydroxylase promoter activity during midbrain dopaminergic neuron development.
Natsuki Matsushita, Hideki Okada, Yasunobu Yasoshima, Kazuaki Takahashi, Kazutoshi Kiuchi, Kazuto Kobayashi
J. Neurochem., 82, 295-304 (2002). 12124430

Health Report

Examination Date / Room / Rack2026/03/02Room:4-ARack:K囮検査
2025/12/22Room:4-ARack:K囮検査
2025/10/14Room:4-ARack:K囮検査
2025/07/28Room:4-ARack:K囮検査
2025/05/19Room:4-ARack:K囮検査
2025/02/17Room:4-ARack:K囮検査
2024/11/18Room:4-ARack:K囮検査
2024/08/19Room:4-ARack:K囮検査

Gene

Gene SymbolGene NameChr.Allele SymbolAllele NameCommon NamesPromoterDiseases Related to This Gene
GFP Green Fluorescent Protein (Aequorea victoria)UN rat tyrosine hydroxylase (TH) promoter

Phenotype

Phenotype annotation from literatures by Mammalian phenotype ontology
Detailed phenotype data

Ordering Information

供与核酸rat tyrosine hydroxylase (TH) promoter, rabbit beta-globin intron, jelly fish green fluorescent protein (GFP) gene, rabbit beta-globin poly A, SV40 early gene poly A
Research applicationFluorescent Proteins/lacZ System
Neurobiology Research
提供条件研究成果の公表にあたって寄託者の指定する文献を引用する。J. Neurochem., 82, 295-304 (2002).
Depositor小林 和人(公立大学法人福島県立医科大学)
Strain Status生体のアイコン生体
凍結胚のアイコン凍結胚
凍結精子のアイコン凍結精子
Strain Availability凍結精子を1ヶ月以内に提供可能
凍結胚を1ヶ月以内に提供可能
生体マウスを1~3ヶ月以内に提供可能
Additional Info.Necessary documents for ordering:
  1. Order form (Japanese / English)
  2. Category I MTA: MTA for distribution with RIKEN BRC (Japanese / English)
  3. Acceptance of responsibility for living modified organism (Japanese / English)
Lab HP (Japanese)
Genotyping protocol -PCR-
Mouse of the Month May 2008

Construct map
Transgene sequence

BRC mice in Publications

Bannikova AE, Pronina TS, Troshev DV, Bogdanov VV, Kolacheva AA, Pavlova EN, Blokhin VE, Kalashnikova VI, Ugrumov MV.
Salt loading as a promising approach to study the dopaminergic phenotype of neurons of the supraoptic nucleus in mice.
PLoS One 21(2) e0340281(2026) 41650117
Iguchi Y, Fukabori R, Kato S, Takahashi K, Eifuku S, Maejima Y, Shimomura K, Mizuma H, Mawatari A, Doi H, Cui Y, Onoe H, Hikishima K, Osanai M, Nishijo T, Momiyama T, Benton R, Kobayashi K.
Chemogenetic activation of mammalian brain neurons expressing insect Ionotropic Receptors by systemic ligand precursor administration.
Commun Biol 7(1) 547(2024) 38714803
Troshev D, Bannikova A, Blokhin V, Pavlova E, Kolacheva A, Ugrumov M.
Compensatory Processes in Striatal Neurons Expressing the Tyrosine Hydroxylase Gene in Transgenic Mice in a Model of Parkinson's Disease.
Int J Mol Sci 24(22) (2023) 38003434
Imai R, Mizuno K, Omiya Y, Mizoguchi K, Maejima Y, Shimomura K.
The effects of ninjin'yoeito on the electrophysiological properties of dopamine neurons in the ventral tegmental area/substantia nigra pars compacta and medium spiny neurons in the nucleus accumbens.
Aging (Albany NY) 14(11) 4634-4652(2022) 35660668
Siller A, Hofer NT, Tomagra G, Burkert N, Hess S, Benkert J, Gaifullina A, Spaich D, Duda J, Poetschke C, Vilusic K, Fritz EM, Schneider T, Kloppenburg P, Liss B, Carabelli V, Carbone E, Ortner NJ, Striessnig J.
β2-subunit alternative splicing stabilizes Cav2.3 Ca2+ channel activity during continuous midbrain dopamine neuron-like activity.
Elife 11 (2022) 35792082
Troshev D, Bannikova A, Blokhin V, Kolacheva A, Pronina T, Ugrumov M.
Striatal Neurons Partially Expressing a Dopaminergic Phenotype: Functional Significance and Regulation.
Int J Mol Sci 23(19) (2022) 36232359
Dening Y, Straßl T, Ruf V, Dirscherl P, Chovsepian A, Stievenard A, Khairnar A, Schmidt F, Giesert F, Herms J, Levin J, Dieterich M, Falkai P, Weisenhorn DV, Wurst W, Giese A, Pan-Montojo F.
Toxicity of extracellular alpha-synuclein is independent of intracellular alpha-synuclein.
Sci Rep 12(1) 21951(2022) 36535974
Tossell K, Dodhia RA, Galet B, Tkachuk O, Ungless MA.
Tonic GABAergic inhibition, via GABAA receptors containing αβƐ subunits, regulates excitability of ventral tegmental area dopamine neurons.
Eur J Neurosci 53(6) 1722-1737(2021) 33522050
Heo JY, Nam MH, Yoon HH, Kim J, Hwang YJ, Won W, Woo DH, Lee JA, Park HJ, Jo S, Lee MJ, Kim S, Shim JE, Jang DP, Kim KI, Huh SH, Jeong JY, Kowall NW, Lee J, Im H, Park JH, Jang BK, Park KD, Lee HJ, Shin H, Cho IJ, Hwang EM, Kim Y, Kim HY, Oh SJ, Lee SE, Paek SH, Yoon JH, Jin BK, Kweon GR, Shim I, Hwang O, Ryu H, Jeon SR, Lee CJ.
Aberrant Tonic Inhibition of Dopaminergic Neuronal Activity Causes Motor Symptoms in Animal Models of Parkinson's Disease.
Curr Biol 30(2) 276-291.e9(2020) 31928877
Kosaka T, Pignatelli A, Kosaka K.
Heterogeneity of tyrosine hydroxylase expressing neurons in the main olfactory bulb of the mouse.
Neurosci Res 157 15-33(2020) 31629793
Kiyokage E, Kobayashi K, Toida K.
Spatial distribution of synapses on tyrosine hydroxylase-expressing juxtaglomerular cells in the mouse olfactory glomerulus.
J Comp Neurol 525(5) 1059-1074(2017) 27864931
Romanov RA, Zeisel A, Bakker J, Girach F, Hellysaz A, Tomer R, Alpár A, Mulder J, Clotman F, Keimpema E, Hsueh B, Crow AK, Martens H, Schwindling C, Calvigioni D, Bains JS, Máté Z, Szabó G, Yanagawa Y, Zhang MD, Rendeiro A, Farlik M, Uhlén M, Wulff P, Bock C, Broberger C, Deisseroth K, Hökfelt T, Linnarsson S, Horvath TL, Harkany T.
Molecular interrogation of hypothalamic organization reveals distinct dopamine neuronal subtypes.
Nat Neurosci 20(2) 176-188(2017) 27991900
Masi A, Narducci R, Resta F, Carbone C, Kobayashi K, Mannaioni G.
Differential contribution of Ih to the integration of excitatory synaptic inputs in substantia nigra pars compacta and ventral tegmental area dopaminergic neurons.
Eur J Neurosci 42(9) 2699-706(2015) 26354486
Suzuki Y, Kiyokage E, Sohn J, Hioki H, Toida K.
Structural basis for serotonergic regulation of neural circuits in the mouse olfactory bulb.
J Comp Neurol 523(2) 262-80(2015) 25234191
Zhu S, Zhao C, Wu Y, Yang Q, Shao A, Wang T, Wu J, Yin Y, Li Y, Hou J, Zhang X, Zhou G, Gu X, Wang X, Bustelo XR, Zhou J.
Identification of a Vav2-dependent mechanism for GDNF/Ret control of mesolimbic DAT trafficking.
Nat Neurosci 18(8) 1084-93(2015) 26147533
Sawada M, Kaneko N, Inada H, Wake H, Kato Y, Yanagawa Y, Kobayashi K, Nemoto T, Nabekura J, Sawamoto K.
Sensory input regulates spatial and subtype-specific patterns of neuronal turnover in the adult olfactory bulb.
J Neurosci 31(32) 11587-96(2011) 21832189