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Gene Expression Literature Summary
Symbol
Name
ID
Fos
FBJ osteosarcoma oncogene
MGI:95574

113 matching records from 113 references.

Summary by Age and Assay: Numbers in the table indicate the number of results matching the search criteria.
Age E0.5 E1 E1.5 E2 E2.5 E3 E3.5 E4 E4.5 E5.5 E6.5 E7.5 E8.5 E9 E9.5 E10 E10.5 E11.5 E12.5 E13.5 E14.5 E15 E15.5 E16 E16.5 E17 E17.5 E18 E18.5 E19.5 E20 E P
Immunohistochemistry (section) 1 1 3 2 5 1 1 3 1 1 2 5 1 1 39
In situ RNA (section) 1 2 2 8 1 2 3 1 7
Immunohistochemistry (whole mount) 1 1 1 1 1 1 3
In situ RNA (whole mount) 1 2
Northern blot 1 1 3 4 3 2 1 1 1 1 1 1 1 1 1 2
Western blot 1 1 1 1 1 1 2
RT-PCR 1 1 2 1 3 1 3 1 2 1 1 3 3 2 4 2 6 1 2 1 1 3 5 1 13

Summary by Gene and Reference: Number indicates the number of results matching the search criteria recorded for each reference.
* Indicates detailed expression data entries available
Fos  FBJ osteosarcoma oncogene   (Synonyms: c-fos, cFos, D12Rfj1)
Results  Reference
1J:219809 Afelik S, Pool B, Schmerr M, Penton C, Jensen J, Wnt7b is required for epithelial progenitor growth and operates during epithelial-to-mesenchymal signaling in pancreatic development. Dev Biol. 2015 Mar 15;399(2):204-17
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1J:298146 Bae B, Gruner HN, Lynch M, Feng T, So K, Oliver D, Mastick GS, Yan W, Pieraut S, Miura P, Elimination of Calm1 long 3'-UTR mRNA isoform by CRISPR-Cas9 gene editing impairs dorsal root ganglion development and hippocampal neuron activation in mice. RNA. 2020 Oct;26(10):1414-1430
1J:182611 Bard-Chapeau EA, Jeyakani J, Kok CH, Muller J, Chua BQ, Gunaratne J, Batagov A, Jenjaroenpun P, Kuznetsov VA, Wei CL, D'Andrea RJ, Bourque G, Jenkins NA, Copeland NG, Ecotopic viral integration site 1 (EVI1) regulates multiple cellular processes important for cancer and is a synergistic partner for FOS protein in invasive tumors. Proc Natl Acad Sci U S A. 2012 Feb 7;109(6):2168-73
6J:219394 Boroviak T, Loos R, Bertone P, Smith A, Nichols J, The ability of inner-cell-mass cells to self-renew as embryonic stem cells is acquired following epiblast specification. Nat Cell Biol. 2014 Jun;16(6):516-28
1J:297574 Bres EE, Safina D, Muller J, Bedner P, Yang H, Helluy X, Shchyglo O, Jansen S, Mark MD, Esser A, Steinhauser C, Herlitze S, Pietrzik CU, Sirko S, Manahan-Vaughan D, Faissner A, Lipoprotein receptor loss in forebrain radial glia results in neurological deficits and severe seizures. Glia. 2020 Dec;68(12):2517-2549
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1J:188332 Delogu A, Sellers K, Zagoraiou L, Bocianowska-Zbrog A, Mandal S, Guimera J, Rubenstein JL, Sugden D, Jessell T, Lumsden A, Subcortical visual shell nuclei targeted by ipRGCs develop from a Sox14+-GABAergic progenitor and require Sox14 to regulate daily activity rhythms. Neuron. 2012 Aug 23;75(4):648-62
1J:268552 Denaxa M, Neves G, Rabinowitz A, Kemlo S, Liodis P, Burrone J, Pachnis V, Modulation of Apoptosis Controls Inhibitory Interneuron Number in the Cortex. Cell Rep. 2018 Feb 13;22(7):1710-1721
1J:344351 Deska-Gauthier D, Borowska-Fielding J, Jones C, Zhang H, MacKay CS, Michail R, Bennett LA, Bikoff JB, Zhang Y, Embryonic temporal-spatial delineation of excitatory spinal V3 interneuron diversity. Cell Rep. 2023 Dec 29;43(1):113635
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1J:306877 Du Y, Huo Q, Li T, Sun D, Sun T, Lu Z, Construction of a Mex3c Gene-Deficient Mouse Model to Study C-FOS Expression in Hypothalamic Nuclei and Observe Morphological Differences in Embryonic Neural Tube Development. Med Sci Monit. 2020 Nov 16;26:e927334
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4*J:32257 Fisher C, Byers MR, Iadarola MJ, Powers EA, Patterns of epithelial expression of Fos protein suggest important role in the transition from viable to cornified cell during keratinization. Development. 1991 Feb;111(2):253-8
1J:140104 Franco CA, Mericskay M, Parlakian A, Gary-Bobo G, Gao-Li J, Paulin D, Gustafsson E, Li Z, Serum response factor is required for sprouting angiogenesis and vascular integrity. Dev Cell. 2008 Sep;15(3):448-61
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1J:227703 Garside VC, Cullum R, Alder O, Lu DY, Vander Werff R, Bilenky M, Zhao Y, Jones SJ, Marra MA, Underhill TM, Hoodless PA, SOX9 modulates the expression of key transcription factors required for heart valve development. Development. 2015 Dec 15;142(24):4340-50
1J:152162 Geller SF, Guerin KI, Visel M, Pham A, Lee ES, Dror AA, Avraham KB, Hayashi T, Ray CA, Reh TA, Bermingham-McDonogh O, Triffo WJ, Bao S, Isosomppi J, Vastinsalo H, Sankila EM, Flannery JG, CLRN1 is nonessential in the mouse retina but is required for cochlear hair cell development. PLoS Genet. 2009 Aug;5(8):e1000607
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1*J:303862 Hada K, Wulaer B, Nagai T, Itoh N, Sawahata M, Sobue A, Mizoguchi H, Mori D, Kushima I, Nabeshima T, Ozaki N, Yamada K, Mice carrying a schizophrenia-associated mutation of the Arhgap10 gene are vulnerable to the effects of methamphetamine treatment on cognitive function: association with morphological abnormalities in striatal neurons. Mol Brain. 2021 Jan 22;14(1):21
1J:137254 Harrison SJ, Parrish M, Monaghan AP, Sall3 is required for the terminal maturation of olfactory glomerular interneurons. J Comp Neurol. 2008 Apr 10;507(5):1780-94
3*J:138863 Hayhurst GP, Strick-Marchand H, Mulet C, Richard AF, Morosan S, Kremsdorf D, Weiss MC, Morphogenetic competence of HNF4alpha-deficient mouse hepatic cells. J Hepatol. 2008 Sep;49(3):384-95
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1*J:139177 Hoffman BG, Zavaglia B, Witzsche J, Ruiz de Algara T, Beach M, Hoodless PA, Jones SJ, Marra MA, Helgason CD, Identification of transcripts with enriched expression in the developing and adult pancreas. Genome Biol. 2008;9(6):R99
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1J:307582 Pandolfi EC, Hoffmann HM, Schoeller EL, Gorman MR, Mellon PL, Haploinsufficiency of SIX3 Abolishes Male Reproductive Behavior Through Disrupted Olfactory Development, and Impairs Female Fertility Through Disrupted GnRH Neuron Migration. Mol Neurobiol. 2018 Nov;55(11):8709-8727
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1J:100443 Shi Y, Bao X, Huo X, Shen Z, Song T, 50-Hz magnetic field (0.1-mT) alters c-fos mRNA expression of early post implantation mouse embryos and serum estradiol levels of gravid mice. Birth Defects Res B Dev Reprod Toxicol. 2005 Apr;74(2):196-200
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1J:321981 Shull LC, Lencer ES, Kim HM, Goyama S, Kurokawa M, Costello JC, Jones K, Artinger KB, PRDM paralogs antagonistically balance Wnt/beta-catenin activity during craniofacial chondrocyte differentiation. Development. 2022 Feb 15;149(4):dev200082
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