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Gene Expression Literature Summary
Assay
Age
Immunohistochemistry (section)
13.5 DPC

44 matching records from 44 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
Reln  reelin  
Results  Reference
1*J:148786 Barber M, Di Meglio T, Andrews WD, Hernandez-Miranda LR, Murakami F, Chedotal A, Parnavelas JG, The role of Robo3 in the development of cortical interneurons. Cereb Cortex. 2009 Jul;19 Suppl 1:i22-31
1J:208337 Bodea GO, Spille JH, Abe P, Andersson AS, Acker-Palmer A, Stumm R, Kubitscheck U, Blaess S, Reelin and CXCL12 regulate distinct migratory behaviors during the development of the dopaminergic system. Development. 2014 Feb;141(3):661-73
1J:147315 Boisseau S, Kunert-Keil C, Lucke S, Bouron A, Heterogeneous distribution of TRPC proteins in the embryonic cortex. Histochem Cell Biol. 2009 Mar;131(3):355-63
1J:112971 Camarero G, Tyrsin OY, Xiang C, Pfeiffer V, Pleiser S, Wiese S, Gotz R, Rapp UR, Cortical migration defects in mice expressing A-RAF from the B-RAF locus. Mol Cell Biol. 2006 Oct;26(19):7103-15
1J:184876 Chiara F, Badaloni A, Croci L, Yeh ML, Cariboni A, Hoerder-Suabedissen A, Consalez GG, Eickholt B, Shimogori T, Parnavelas JG, Rakic S, Early B-cell factors 2 and 3 (EBF2/3) regulate early migration of Cajal-Retzius cells from the cortical hem. Dev Biol. 2012 May 1;365(1):277-89
1J:158610 Coffinier C, Chang SY, Nobumori C, Tu Y, Farber EA, Toth JI, Fong LG, Young SG, Abnormal development of the cerebral cortex and cerebellum in the setting of lamin B2 deficiency. Proc Natl Acad Sci U S A. 2010 Mar 16;107(11):5076-81
1J:264980 Coffinier C, Jung HJ, Nobumori C, Chang S, Tu Y, Barnes RH 2nd, Yoshinaga Y, de Jong PJ, Vergnes L, Reue K, Fong LG, Young SG, Deficiencies in lamin B1 and lamin B2 cause neurodevelopmental defects and distinct nuclear shape abnormalities in neurons. Mol Biol Cell. 2011 Dec;22(23):4683-93
1J:310452 Dairaghi L, Flannery E, Giacobini P, Saglam A, Saadi H, Constantin S, Casoni F, Howell BW, Wray S, Reelin Can Modulate Migration of Olfactory Ensheathing Cells and Gonadotropin Releasing Hormone Neurons via the Canonical Pathway. Front Cell Neurosci. 2018;12:228
1J:226378 Falk S, Joosten E, Kaartinen V, Sommer L, Smad4 and Trim33/Tif1gamma redundantly regulate neural stem cells in the developing cortex. Cereb Cortex. 2014 Nov;24(11):2951-63
1J:232789 Feng J, Xian Q, Guan T, Hu J, Wang M, Huang Y, So KF, Evans SM, Chai G, Goffinet AM, Qu Y, Zhou L, Celsr3 and Fzd3 Organize a Pioneer Neuron Scaffold to Steer Growing Thalamocortical Axons. Cereb Cortex. 2016 Jul;26(7):3323-34
1J:106708 Fink AJ, Englund C, Daza RA, Pham D, Lau C, Nivison M, Kowalczyk T, Hevner RF, Development of the deep cerebellar nuclei: transcription factors and cell migration from the rhombic lip. J Neurosci. 2006 Mar 15;26(11):3066-76
1J:201824 Goh CP, Low LH, Putz U, Gunnersen J, Hammond V, Howitt J, Tan SS, Ndfip1 expression in developing neurons indicates a role for protein ubiquitination by Nedd4 E3 ligases during cortical development. Neurosci Lett. 2013 Oct 25;555:225-30
1J:336502 Han JS, Fishman-Williams E, Decker SC, Hino K, Reyes RV, Brown NL, Simo S, Torre A, Notch directs telencephalic development and controls neocortical neuron fate determination by regulating microRNA levels. Development. 2023 Jun 1;150(11):dev201408
1J:125693 Hanashima C, Fernandes M, Hebert JM, Fishell G, The role of Foxg1 and dorsal midline signaling in the generation of Cajal-Retzius subtypes. J Neurosci. 2007 Oct 10;27(41):11103-11
1J:145299 Hochstim C, Deneen B, Lukaszewicz A, Zhou Q, Anderson DJ, Identification of positionally distinct astrocyte subtypes whose identities are specified by a homeodomain code. Cell. 2008 May 2;133(3):510-22
1J:227000 Hsu LC, Nam S, Cui Y, Chang CP, Wang CF, Kuo HC, Touboul JD, Chou SJ, Lhx2 regulates the timing of beta-catenin-dependent cortical neurogenesis. Proc Natl Acad Sci U S A. 2015 Sep 29;112(39):12199-204
1*J:127272 Ina A, Sugiyama M, Konno J, Yoshida S, Ohmomo H, Nogami H, Shutoh F, Hisano S, Cajal-Retzius cells and subplate neurons differentially express vesicular glutamate transporters 1 and 2 during development of mouse cortex. Eur J Neurosci. 2007 Aug;26(3):615-23
1J:79141 Jensen P, Zoghbi HY, Goldowitz D, Dissection of the cellular and molecular events that position cerebellar Purkinje cells: a study of the math1 null-mutant mouse. J Neurosci. 2002 Sep 15;22(18):8110-6
1J:283402 Kastriti ME, Stratigi A, Mariatos D, Theodosiou M, Savvaki M, Kavkova M, Theodorakis K, Vidaki M, Zikmund T, Kaiser J, Adameyko I, Karagogeos D, Ablation of CNTN2+ Pyramidal Neurons During Development Results in Defects in Neocortical Size and Axonal Tract Formation. Front Cell Neurosci. 2019;13:454
1J:138572 Komada M, Saitsu H, Kinboshi M, Miura T, Shiota K, Ishibashi M, Hedgehog signaling is involved in development of the neocortex. Development. 2008 Aug;135(16):2717-27
1J:169495 Kruger MT, Zhao S, Chai X, Brunne B, Bouche E, Bock HH, Frotscher M, Role for Reelin-induced cofilin phosphorylation in the assembly of sympathetic preganglionic neurons in the murine intermediolateral column. Eur J Neurosci. 2010 Nov;32(10):1611-7
1J:315293 Kumamoto T, Toma K, Gunadi, McKenna WL, Kasukawa T, Katzman S, Chen B, Hanashima C, Foxg1 coordinates the switch from nonradially to radially migrating glutamatergic subtypes in the neocortex through spatiotemporal repression. Cell Rep. 2013 Mar 28;3(3):931-45
1J:34807 Miyata T, Nakajima K, Aruga J, Takahashi S, Ikenaka K, Mikoshiba K, Ogawa M, Distribution of a reeler gene-related antigen in the developing cerebellum: an immunohistochemical study with an allogeneic antibody CR-50 on normal and reeler mice. J Comp Neurol. 1996 Aug 19;372(2):215-28
1J:330186 Nguyen H, Sokpor G, Parichha A, Pham L, Saikhedkar N, Xie Y, Ulmke PA, Rosenbusch J, Pirouz M, Behr R, Stoykova A, Brand-Saberi B, Nguyen HP, Staiger JF, Tole S, Tuoc T, BAF (mSWI/SNF) complex regulates mediolateral cortical patterning in the developing forebrain. Front Cell Dev Biol. 2022;10:1011109
1*J:94531 Nieto M, Monuki ES, Tang H, Imitola J, Haubst N, Khoury SJ, Cunningham J, Gotz M, Walsh CA, Expression of Cux-1 and Cux-2 in the subventricular zone and upper layers II-IV of the cerebral cortex. J Comp Neurol. 2004 Nov 8;479(2):168-80
1J:312376 Pastar V, Lozic M, Kelam N, Filipovic N, Bernard B, Katsuyama Y, Vukojevic K, Connexin Expression Is Altered in Liver Development of Yotari (dab1 -/-) Mice. Int J Mol Sci. 2021 Oct 2;22(19)
1J:138579 Pawlisz AS, Mutch C, Wynshaw-Boris A, Chenn A, Walsh CA, Feng Y, Lis1-Nde1-dependent neuronal fate control determines cerebral cortical size and lamination. Hum Mol Genet. 2008 Aug 15;17(16):2441-55
1J:75822 Phelps PE, Rich R, Dupuy-Davies S, Rios Y, Wong T, Evidence for a cell-specific action of reelin in the spinal cord. Dev Biol. 2002 Apr 1;244(1):180-98
1J:309208 Ravni A, Tissir F, Goffinet AM, DeltaNp73 transcription factors modulate cell survival and tumor development. Cell Cycle. 2010 Apr 15;9(8):1523-7
1J:275611 Saaber F, Schutz D, Miess E, Abe P, Desikan S, Ashok Kumar P, Balk S, Huang K, Beaulieu JM, Schulz S, Stumm R, ACKR3 Regulation of Neuronal Migration Requires ACKR3 Phosphorylation, but Not beta-Arrestin. Cell Rep. 2019 Feb 5;26(6):1473-1488.e9
1J:341383 Salamon I, Park Y, Miskic T, Kopic J, Matteson P, Page NF, Roque A, McAuliffe GW, Favate J, Garcia-Forn M, Shah P, Judas M, Millonig JH, Kostovic I, De Rubeis S, Hart RP, Krsnik Z, Rasin MR, Celf4 controls mRNA translation underlying synaptic development in the prenatal mammalian neocortex. Nat Commun. 2023 Sep 27;14(1):6025
1J:327338 Sartoretti MM, Campetella CA, Lanuza GM, Dbx1 controls the development of astrocytes of the intermediate spinal cord by modulating Notch signaling. Development. 2022 Aug 1;149(15):dev200750
1J:264182 Shehabeldin R, Lutz D, Karsak M, Frotscher M, Krieglstein K, Sharaf A, Reelin controls the positioning of brainstem serotonergic raphe neurons. PLoS One. 2018;13(7):e0200268
1J:184856 Shintani T, Takeuchi Y, Fujikawa A, Noda M, Directional neuronal migration is impaired in mice lacking adenomatous polyposis coli 2. J Neurosci. 2012 May 9;32(19):6468-84
1J:130128 Siegenthaler JA, Miller MW, Generation of Cajal-Retzius neurons in mouse forebrain is regulated by transforming growth factor beta-Fox signaling pathways. Dev Biol. 2008 Jan 1;313(1):35-46
1J:102077 Stoykova A, Hatano O, Gruss P, Gotz M, Increase in reelin-positive cells in the marginal zone of Pax6 mutant mouse cortex. Cereb Cortex. 2003 Jun;13(6):560-71
1J:162846 Teissier A, Griveau A, Vigier L, Piolot T, Borello U, Pierani A, A novel transient glutamatergic population migrating from the pallial-subpallial boundary contributes to neocortical development. J Neurosci. 2010 Aug 4;30(31):10563-74
1J:191783 Teissier A, Waclaw RR, Griveau A, Campbell K, Pierani A, Tangentially migrating transient glutamatergic neurons control neurogenesis and maintenance of cerebral cortical progenitor pools. Cereb Cortex. 2012 Feb;22(2):403-16
1*J:94458 Tripodi M, Filosa A, Armentano M, Studer M, The COUP-TF nuclear receptors regulate cell migration in the mammalian basal forebrain. Development. 2004 Dec;131(24):6119-29
1J:275093 Vaswani AR, Weykopf B, Hagemann C, Fried HU, Brustle O, Blaess S, Correct setup of the substantia nigra requires Reelin-mediated fast, laterally-directed migration of dopaminergic neurons. Elife. 2019 Jan 28;8:e41623
1J:108959 Villeda SA, Akopians AL, Babayan AH, Basbaum AI, Phelps PE, Absence of Reelin results in altered nociception and aberrant neuronal positioning in the dorsal spinal cord. Neuroscience. 2006;139(4):1385-96
1*J:137018 Voss AK, Britto JM, Dixon MP, Sheikh BN, Collin C, Tan SS, Thomas T, C3G regulates cortical neuron migration, preplate splitting and radial glial cell attachment. Development. 2008 Jun;135(12):2139-49
1*J:95889 Wines-Samuelson M, Handler M, Shen J, Role of presenilin-1 in cortical lamination and survival of Cajal-Retzius neurons. Dev Biol. 2005 Jan 15;277(2):332-46
1J:91158 Yip YP, Zhou G, Capriotti C, Yip JW, Location of preganglionic neurons is independent of birthdate but is correlated to reelin-producing cells in the spinal cord. J Comp Neurol. 2004 Aug 2;475(4):564-74

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last database update
04/23/2024
MGI 6.23
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