- abnormal liver physiology / MGI
- abnormal adrenal gland morphology / MGI
- enlarged adrenal glands / MGI
- absent adrenal medulla / MGI
- absent adrenergic chromaffin cells / MGI
- enlarged adrenocortical cells / MGI
- abnormal lung morphology / MGI
- abnormal lung development / MGI
- atelectasis / MGI
- thick pulmonary interalveolar septum / MGI
- cyanosis / MGI
- absent circulating adrenaline / MGI
- increased circulating corticosterone level / MGI
- increased circulating adrenocorticotropin level / MGI
- respiratory failure / MGI
- respiratory distress / MGI
- no abnormal phenotype detected / MGI
- abnormal pulmonary alveolus morphology / MGI
- abnormal pulmonary alveolus epithelial cell morphology / MGI
- abnormal alveolocapillary membrane morphology / MGI
- decreased circulating adrenocorticotropin level / MGI
- decreased circulating corticosterone level / MGI
- increased circulating aldosterone level / MGI
- small adrenal glands / MGI
- decreased circulating testosterone level / MGI
- abnormal respiratory system development / MGI
- decreased macrophage cell number / MGI
- pulmonary hyperplasia / MGI
- abnormal surfactant secretion / MGI
- increased susceptibility to experimental autoimmune encephalomyelitis / MGI
- increased mean systemic arterial blood pressure / MGI
- abnormal osteoblast physiology / MGI
- decreased B cell number / MGI
- abnormal blood-brain barrier function / MGI
- abnormal circulating corticosterone level / MGI
- renal/urinary system phenotype / MGI
- adipose tissue phenotype / MGI
- homeostasis/metabolism phenotype / MGI
- growth/size/body region phenotype / MGI
- skeleton phenotype / MGI
- increased renin activity / MGI
- increased lung weight / MGI
- decreased circulating noradrenaline level / MGI
- impaired lung alveolus development / MGI
- increased systemic arterial systolic blood pressure / MGI
- increased circulating angiotensinogen level / MGI
- decreased T cell apoptosis / MGI
- decreased CD4-positive, alpha beta T cell number / MGI
- decreased CD8-positive, alpha-beta T cell number / MGI
- abnormal adrenal cortex morphology / MGI
- enlarged adrenocortical cell nuclei / MGI
- abnormal adrenal gland zona glomerulosa morphology / MGI
- abnormal adrenal gland zona fasciculata morphology / MGI
- abnormal adrenal gland zona reticularis morphology / MGI
- thin adrenal cortex / MGI
- abnormal osteoblast differentiation / MGI
- abnormal adrenal chromaffin cell morphology / MGI
- decreased survivor rate / MGI
- abnormal physiological response to xenobiotic / MGI
- decreased erythroid progenitor cell number / MGI
- abnormal thymocyte apoptosis / MGI
- increased liver triglyceride level / MGI
- increased type II pneumocyte number / MGI
- decreased type I pneumocyte number / MGI
- abnormal branching involved in terminal bronchiole morphogenesis / MGI
- postnatal lethality, complete penetrance / MGI
- neonatal lethality, complete penetrance / MGI
- neonatal lethality, incomplete penetrance / MGI
- perinatal lethality, complete penetrance / MGI
- perinatal lethality, incomplete penetrance / MGI
- decreased noradrenaline level / MGI
- decreased adrenaline level / MGI
B6.129P2-Nr3c1tm2Gsc/Ieg
Status | Available to order |
EMMA ID | EM:02124 |
International strain name | B6.129P2-Nr3c1tm2Gsc/Ieg |
Alternative name | GRflox |
Strain type | Targeted Mutant Strains : Conditional mutation |
Allele/Transgene symbol | Nr3c1tm2Gsc |
Gene/Transgene symbol | Nr3c1 |
Information from provider
Provider | Günther Schütz |
Provider affiliation | Molecular Biology of the Cell I, German Cancer Research Center |
Genetic information | Exon3 of the glucocorticoid receptor is flanked by loxP sites allowing Cre-dependent excision. |
Phenotypic information | None. |
Breeding history | Backcrossed in C57BL/6 for >10 generations. |
References |
|
Information from EMMA
Archiving centre | Helmholtz Zentrum Muenchen - German Research Center for Environmental Health (GmbH), Oberschleißheim, Germany |
Disease and phenotype information
Orphanet associated rare diseases, based on orthologous gene matching
- Generalized glucocorticoid resistance syndrome / Orphanet_786
MGI phenotypes (gene matching)
Literature references
- Disruption of the glucocorticoid receptor gene in the nervous system results in reduced anxiety.;Tronche F, Kellendonk C, Kretz O, Gass P, Anlag K, Orban P C, Bock R, Klein R, Schütz G, ;1999;Nature genetics;23;99-103; 10471508
- Circadian variation in pulmonary inflammatory responses is independent of rhythmic glucocorticoid signaling in airway epithelial cells.;Ince Louise M, Zhang Zhenguang, Beesley Stephen, Vonslow Ryan M, Saer Ben R, Matthews Laura C, Begley Nicola, Gibbs Julie E, Ray David W, Loudon Andrew S I, ;2019;FASEB journal : official publication of the Federation of American Societies for Experimental Biology;33;126-139; 29965797
- Glucocorticoid receptor is required for foetal heart maturation.;Rog-Zielinska Eva A, Thomson Adrian, Kenyon Christopher J, Brownstein David G, Moran Carmel M, Szumska Dorota, Michailidou Zoi, Richardson Jennifer, Owen Elizabeth, Watt Alistair, Morrison Harris, Forrester Lesley M, Bhattacharya Shoumo, Holmes Megan C, Chapman Karen E, ;2013;Human molecular genetics;22;3269-82; 23595884
- Antenatal dexamethasone treatment transiently alters diastolic function in the mouse fetal heart.;Agnew E J, Garcia-Burgos A, Richardson R V, Manos H, Thomson A J W, Sooy K, Just G, Homer N Z M, Moran C M, Brunton P J, Gray G A, Chapman K E, ;2019;The Journal of endocrinology;241;279-292; 31013474
- Glucocorticoid receptor alters isovolumetric contraction and restrains cardiac fibrosis.;Richardson Rachel V, Batchen Emma J, Thomson Adrian J W, Darroch Rowan, Pan Xinlu, Rog-Zielinska Eva A, Wyrzykowska Wiktoria, Scullion Kathleen, Al-Dujaili Emad A S, Diaz Mary E, Moran Carmel M, Kenyon Christopher J, Gray Gillian A, Chapman Karen E, ;2017;The Journal of endocrinology;232;437-450; 28057868
- Glucocorticoids promote structural and functional maturation of foetal cardiomyocytes: a role for PGC-1α.;Rog-Zielinska E A, Craig M-A, Manning J R, Richardson R V, Gowans G J, Dunbar D R, Gharbi K, Kenyon C J, Holmes M C, Hardie D G, Smith G L, Chapman K E, ;2015;Cell death and differentiation;22;1106-16; 25361084
- Hypothalamic AgRP neurons exert top-down control on systemic TNF-α release during endotoxemia.;Boutagouga Boudjadja Mehdi, Culotta Isabella, De Paula Gabriela C, Harno Erika, Hunter Jenna, Cavalcanti-de-Albuquerque João Paulo, Luckman Simon M, Hepworth Matthew, White Anne, Aviello Gabriella, D'Agostino Giuseppe, ;2022;Current biology : CB;32;4699-4706.e4; 36182699
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