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Gene Expression Literature Summary
Assay
Age
In situ RNA (section)
12.5 DPC

61 matching records from 61 references.

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
Gli1  GLI-Kruppel family member GLI1   (Synonyms: Zfp5, Zfp-5)
Results  Reference
1J:229226 Amaniti EM, Fu C, Lewis S, Saisana M, Magnani D, Mason JO, Theil T, Expansion of the piriform cortex contributes to corticothalamic pathfinding defects in Gli3 conditional mutants. Cereb Cortex. 2015 Feb;25(2):460-71
1J:78219 Aubin J, Dery U, Lemieux M, Chailler P, Jeannotte L, Stomach regional specification requires Hoxa5-driven mesenchymal-epithelial signaling. Development. 2002 Sep;129(17):4075-87
1*J:70831 Becker MB, Zulch A, Bosse A, Gruss P, Irx1 and Irx2 expression in early lung development. Mech Dev. 2001 Aug;106(1-2):155-8
1J:183848 Benadiba C, Magnani D, Niquille M, Morle L, Valloton D, Nawabi H, Ait-Lounis A, Otsmane B, Reith W, Theil T, Hornung JP, Lebrand C, Durand B, The ciliogenic transcription factor RFX3 regulates early midline distribution of guidepost neurons required for corpus callosum development. PLoS Genet. 2012 Mar;8(3):e1002606
1J:171429 Besse L, Neti M, Anselme I, Gerhardt C, Ruther U, Laclef C, Schneider-Maunoury S, Primary cilia control telencephalic patterning and morphogenesis via Gli3 proteolytic processing. Development. 2011 May;138(10):2079-88
1*J:174212 Blaess S, Bodea GO, Kabanova A, Chanet S, Mugniery E, Derouiche A, Stephen D, Joyner AL, Temporal-spatial changes in Sonic Hedgehog expression and signaling reveal different potentials of ventral mesencephalic progenitors to populate distinct ventral midbrain nuclei. Neural Dev. 2011;6:29
1J:244068 Bohnenpoll T, Wittern AB, Mamo TM, Weiss AC, Rudat C, Kleppa MJ, Schuster-Gossler K, Wojahn I, Ludtke TH, Trowe MO, Kispert A, A SHH-FOXF1-BMP4 signaling axis regulating growth and differentiation of epithelial and mesenchymal tissues in ureter development. PLoS Genet. 2017 Aug;13(8):e1006951
1J:121232 Bok J, Dolson DK, Hill P, Ruther U, Epstein DJ, Wu DK, Opposing gradients of Gli repressor and activators mediate Shh signaling along the dorsoventral axis of the inner ear. Development. 2007 May;134(9):1713-22
1J:158523 Brugmann SA, Allen NC, James AW, Mekonnen Z, Madan E, Helms JA, A primary cilia-dependent etiology for midline facial disorders. Hum Mol Genet. 2010 Apr 15;19(8):1577-92
1J:245758 Carreno G, Apps JR, Lodge EJ, Panousopoulos L, Haston S, Gonzalez-Meljem JM, Hahn H, Andoniadou CL, Martinez-Barbera JP, Hypothalamic sonic hedgehog is required for cell specification and proliferation of LHX3/LHX4 pituitary embryonic precursors. Development. 2017 Sep 15;144(18):3289-3302
1J:141874 Cheng W, Yeung CK, Ng YK, Zhang JR, Hui CC, Kim PC, Sonic Hedgehog mediator Gli2 regulates bladder mesenchymal patterning. J Urol. 2008;180(4):1543-50
1J:195725 D'Angelo A, De Angelis A, Avallone B, Piscopo I, Tammaro R, Studer M, Franco B, Ofd1 controls dorso-ventral patterning and axoneme elongation during embryonic brain development. PLoS One. 2012;7(12):e52937
1J:139168 Dakubo GD, Mazerolle C, Furimsky M, Yu C, St-Jacques B, McMahon AP, Wallace VA, Indian hedgehog signaling from endothelial cells is required for sclera and retinal pigment epithelium development in the mouse eye. Dev Biol. 2008 Aug 1;320(1):242-55
1J:83530 Dakubo GD, Wang YP, Mazerolle C, Campsall K, McMahon AP, Wallace VA, Retinal ganglion cell-derived sonic hedgehog signaling is required for optic disc and stalk neuroepithelial cell development. Development. 2003 Jul;130(13):2967-80
1*J:50462 Dassule HR, McMahon AP, Analysis of epithelial-mesenchymal interactions in the initial morphogenesis of the mammalian tooth. Dev Biol. 1998 Oct 15;202(2):215-27
1*J:186282 Du J, Fan Z, Ma X, Wu Y, Liu S, Gao Y, Wang J, Shen Y, Fan M, Wang S, Different expression patterns of Gli1-3 in mouse embryonic maxillofacial development. Acta Histochem. 2012 Oct;114(6):620-5
1J:160493 Dy P, Smits P, Silvester A, Penzo-Mendez A, Dumitriu B, Han Y, de la Motte CA, Kingsley DM, Lefebvre V, Synovial joint morphogenesis requires the chondrogenic action of Sox5 and Sox6 in growth plate and articular cartilage. Dev Biol. 2010 May 15;341(2):346-59
1J:244957 El Shahawy M, Reibring CG, Neben CL, Hallberg K, Marangoni P, Harfe BD, Klein OD, Linde A, Gritli-Linde A, Cell fate specification in the lingual epithelium is controlled by antagonistic activities of Sonic hedgehog and retinoic acid. PLoS Genet. 2017 Jul;13(7):e1006914
1*J:35809 Epstein DJ, Marti E, Scott MP, McMahon AP, Antagonizing cAMP-dependent protein kinase A in the dorsal CNS activates a conserved Sonic hedgehog signaling pathway. Development. 1996 Sep;122(9):2885-94
1J:257526 Feuerstein M, Chleilat E, Khakipoor S, Michailidis K, Ophoven C, Roussa E, Expression patterns of key Sonic Hedgehog signaling pathway components in the developing and adult mouse midbrain and in the MN9D cell line. Cell Tissue Res. 2017 Nov;370(2):211-225
1*J:97076 Furushima K, Murata T, Kiyonari H, Aizawa S, Characterization of Opr deficiency in mouse brain: Subtle defects in dorsomedial telencephalon and medioventral forebrain. Dev Dyn. 2005 Apr;232(4):1056-61
1J:243204 Han L, Xu J, Grigg E, Slack M, Chaturvedi P, Jiang R, Zorn AM, Osr1 functions downstream of Hedgehog pathway to regulate foregut development. Dev Biol. 2017 Jul 01;427(1):72-83
1J:189675 Haraguchi R, Matsumaru D, Nakagata N, Miyagawa S, Suzuki K, Kitazawa S, Yamada G, The hedgehog signal induced modulation of bone morphogenetic protein signaling: an essential signaling relay for urinary tract morphogenesis. PLoS One. 2012;7(7):e42245
1*J:49252 Hardcastle Z, Mo R, Hui CC, Sharpe PT, The Shh signalling pathway in tooth development: defects in Gli2 and Gli3 mutants. Development. 1998 Aug;125(15):2803-11
1J:231976 Hashimoto H, Ishino Y, Jiang W, Yoshimura T, Takeda-Uchimura Y, Uchimura K, Kadomatsu K, Ikenaka K, Keratan Sulfate Regulates the Switch from Motor Neuron to Oligodendrocyte Generation During Development of the Mouse Spinal Cord. Neurochem Res. 2016 Feb;41(1-2):450-62
1J:243870 He H, Huang M, Sun S, Wu Y, Lin X, Epithelial heparan sulfate regulates Sonic Hedgehog signaling in lung development. PLoS Genet. 2017 Aug;13(8):e1006992
1J:152851 Huang X, Ketova T, Fleming JT, Wang H, Dey SK, Litingtung Y, Chiang C, Sonic hedgehog signaling regulates a novel epithelial progenitor domain of the hindbrain choroid plexus. Development. 2009 Aug;136(15):2535-43
1J:160335 Huang X, Liu J, Ketova T, Fleming JT, Grover VK, Cooper MK, Litingtung Y, Chiang C, Transventricular delivery of Sonic hedgehog is essential to cerebellar ventricular zone development. Proc Natl Acad Sci U S A. 2010 May 4;107(18):8422-7
1*J:17485 Hui CC, Slusarski D, Platt KA, Holmgren R, Joyner AL, Expression of three mouse homologs of the Drosophila segment polarity gene cubitus interruptus, Gli, Gli-2, and Gli-3, in ectoderm- and mesoderm-derived tissues suggests multiple roles during postimplantation development. Dev Biol. 1994 Apr;162(2):402-13
1J:41861 Hynes M, Stone DM, Dowd M, Pitts-Meek S, Goddard A, Gurney A , Rosenthal A, Control of cell pattern in the neural tube by the zinc finger transcription factor and oncogene Gli-1. Neuron. 1997 Jul;19(1):15-26
1J:155826 King P, Paul A, Laufer E, Shh signaling regulates adrenocortical development and identifies progenitors of steroidogenic lineages. Proc Natl Acad Sci U S A. 2009 Dec 15;106(50):21185-90
1J:124871 Kolpakova-Hart E, Jinnin M, Hou B, Fukai N, Olsen BR, Kinesin-2 controls development and patterning of the vertebrate skeleton by Hedgehog- and Gli3-dependent mechanisms. Dev Biol. 2007 Sep 15;309(2):273-84
1*J:294771 Lantz B, White C, Liu X, Wan Y, Gabriel G, Lo CWY, Szabo-Rogers HL, Finding the Unicorn, a New Mouse Model of Midfacial Clefting. Genes (Basel). 2020 Jan 11;11(1)
1J:245974 Li J, Cui Y, Xu J, Wang Q, Yang X, Li Y, Zhang X, Qiu M, Zhang Z, Zhang Z, Suppressor of Fused restraint of Hedgehog activity level is critical for osteogenic proliferation and differentiation during calvarial bone development. J Biol Chem. 2017 Sep 22;292(38):15814-15825
1J:332136 Li X, Gordon PJ, Gaynes JA, Fuller AW, Ringuette R, Santiago CP, Wallace V, Blackshaw S, Li P, Levine EM, Lhx2 is a progenitor-intrinsic modulator of Sonic Hedgehog signaling during early retinal neurogenesis. Elife. 2022 Dec 2;11
1J:106707 Lien WH, Klezovitch O, Fernandez TE, Delrow J, Vasioukhin V, alphaE-catenin controls cerebral cortical size by regulating the hedgehog signaling pathway. Science. 2006 Mar 17;311(5767):1609-12
1J:165487 Magnani D, Hasenpusch-Theil K, Jacobs EC, Campagnoni AT, Price DJ, Theil T, The Gli3 hypomorphic mutation Pdn causes selective impairment in the growth, patterning, and axon guidance capability of the lateral ganglionic eminence. J Neurosci. 2010 Oct 13;30(41):13883-94
1J:220860 Magnani D, Morle L, Hasenpusch-Theil K, Paschaki M, Jacoby M, Schurmans S, Durand B, Theil T, The ciliogenic transcription factor Rfx3 is required for the formation of the thalamocortical tract by regulating the patterning of prethalamus and ventral telencephalon. Hum Mol Genet. 2015 May 1;24(9):2578-93
1J:254523 Magno L, Barry C, Schmidt-Hieber C, Theodotou P, Hausser M, Kessaris N, NKX2-1 Is Required in the Embryonic Septum for Cholinergic System Development, Learning, and Memory. Cell Rep. 2017 Aug 15;20(7):1572-1584
1*J:170258 Mavromatakis YE, Lin W, Metzakopian E, Ferri AL, Yan CH, Sasaki H, Whisett J, Ang SL, Foxa1 and Foxa2 positively and negatively regulate Shh signalling to specify ventral midbrain progenitor identity. Mech Dev. 2011 Jan-Feb;128(1-2):90-103
1*J:38381 Mo R, Freer AM, Zinyk DL, Crackower MA, Michaud J, Heng HH, Chik KW, Shi XM, Tsui LC, Cheng SH, Joyner AL, Hui C, Specific and redundant functions of Gli2 and Gli3 zinc finger genes in skeletal patterning and development. Development. 1997 Jan;124(1):113-23
1J:273633 Nagai T, Trakanant S, Kawasaki M, Kawasaki K, Yamada Y, Watanabe M, Blackburn J, Otsuka-Tanaka Y, Hishinuma M, Kitatmura A, Meguro F, Yamada A, Kodama Y, Maeda T, Zhou Q, Saijo Y, Yasue A, Sharpe PT, Hindges R, Takagi R, Ohazama A, MicroRNAs control eyelid development through regulating Wnt signaling. Dev Dyn. 2019 Mar;248(3):201-210
1J:146634 Ohazama A, Haycraft CJ, Seppala M, Blackburn J, Ghafoor S, Cobourne M, Martinelli DC, Fan CM, Peterkova R, Lesot H, Yoder BK, Sharpe PT, Primary cilia regulate Shh activity in the control of molar tooth number. Development. 2009 Mar;136(6):897-903
1J:150347 Paek H, Gutin G, Hebert JM, FGF signaling is strictly required to maintain early telencephalic precursor cell survival. Development. 2009 Jul;136(14):2457-65
1J:50051 Pepicelli CV, Lewis PM, McMahon AP, Sonic hedgehog regulates branching morphogenesis in the mammalian lung. Curr Biol. 1998 Sep 24;8(19):1083-6
1*J:149237 Perez-Balaguer A, Puelles E, Wurst W, Martinez S, Shh dependent and independent maintenance of basal midbrain. Mech Dev. 2009 May-Jun;126(5-6):301-13
1*J:79856 Rallu M, Machold R, Gaiano N, Corbin JG, McMahon AP, Fishell G, Dorsoventral patterning is established in the telencephalon of mutants lacking both Gli3 and Hedgehog signaling. Development. 2002 Nov;129(21):4963-74
1J:57948 Rowitch DH, S.-Jacques B, Lee SM, Flax JD, Snyder EY, McMahon AP, Sonic hedgehog regulates proliferation and inhibits differentiation of CNS precursor cells. J Neurosci. 1999 Oct 15;19(20):8954-65
1J:216223 Seppala M, Xavier GM, Fan CM, Cobourne MT, Boc modifies the spectrum of holoprosencephaly in the absence of Gas1 function. Biol Open. 2014;3(8):728-40
1*J:135151 Sigulinsky CL, Green ES, Clark AM, Levine EM, Vsx2/Chx10 ensures the correct timing and magnitude of Hedgehog signaling in the mouse retina. Dev Biol. 2008 May 15;317(2):560-75
1*J:57297 St-Jacques B, Hammerschmidt M, McMahon AP, Indian hedgehog signaling regulates proliferation and differentiation of chondrocytes and is essential for bone formation [published erratum appears in Genes Dev 1999 Oct 1;13(19):2617]. Genes Dev. 1999 Aug 15;13(16):2072-86
1*J:59923 Tole S, Ragsdale CW, Grove EA, Dorsoventral patterning of the telencephalon is disrupted in the mouse mutant extra-toes(J). Dev Biol. 2000 Jan 15;217(2):254-65
1J:192019 Touahri Y, Escalas N, Benazeraf B, Cochard P, Danesin C, Soula C, Sulfatase 1 promotes the motor neuron-to-oligodendrocyte fate switch by activating Shh signaling in Olig2 progenitors of the embryonic ventral spinal cord. J Neurosci. 2012 Dec 12;32(50):18018-34
1J:147427 Vue TY, Bluske K, Alishahi A, Yang LL, Koyano-Nakagawa N, Novitch B, Nakagawa Y, Sonic hedgehog signaling controls thalamic progenitor identity and nuclei specification in mice. J Neurosci. 2009 Apr 8;29(14):4484-97
1J:311534 Wan Y, Lantz B, Cusack BJ, Szabo-Rogers HL, Prickle1 regulates differentiation of frontal bone osteoblasts. Sci Rep. 2018 Dec 21;8(1):18021
1*J:279855 Wan Y, White C, Robert N, Rogers MB, Szabo-Rogers HL, Localization of Tfap2beta, Casq2, Penk, Zic1, and Zic3 Expression in the Developing Retina, Muscle, and Sclera of the Embryonic Mouse Eye. J Histochem Cytochem. 2019 Dec;67(12):863-871
1J:103124 Wang Y, Dakubo GD, Thurig S, Mazerolle CJ, Wallace VA, Retinal ganglion cell-derived sonic hedgehog locally controls proliferation and the timing of RGC development in the embryonic mouse retina. Development. 2005 Nov;132(22):5103-13
1*J:310333 Xavier GM, Seppala M, Papageorgiou SN, Fan CM, Cobourne MT, Genetic interactions between the hedgehog co-receptors Gas1 and Boc regulate cell proliferation during murine palatogenesis. Oncotarget. 2016 Nov 29;7(48):79233-79246
1J:102950 Xu Q, Wonders CP, Anderson SA, Sonic hedgehog maintains the identity of cortical interneuron progenitors in the ventral telencephalon. Development. 2005 Nov;132(22):4987-98
1J:290855 Yu W, Sun Z, Sweat Y, Sweat M, Venugopalan SR, Eliason S, Cao H, Paine ML, Amendt BA, Pitx2-Sox2-Lef1 interactions specify progenitor oral/dental epithelial cell signaling centers. Development. 2020 Jun 4;147(11):dev186023
1J:97242 Zhang XQ, Afink GB, Hu XR, Nister M, Forsberg-Nilsson K, Gli1 is not required for Pdgfralpha expression during mouse embryonic development. Differentiation. 2005 Mar;73(2-3):109-19

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last database update
04/30/2024
MGI 6.23
The Jackson Laboratory