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

48 matching records from 48 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
Cdh2  cadherin 2   (Synonyms: Ncad, N-CAD, N-cadherin)
Results  Reference
1J:196665 Arvanitis DN, Behar A, Tryoen-Toth P, Bush JO, Jungas T, Vitale N, Davy A, Ephrin B1 maintains apical adhesion of neural progenitors. Development. 2013 May;140(10):2082-92
1J:211278 Belzil C, Asada N, Ishiguro K, Nakaya T, Parsons K, Pendolino V, Neumayer G, Mapelli M, Nakatani Y, Sanada K, Nguyen MD, p600 regulates spindle orientation in apical neural progenitors and contributes to neurogenesis in the developing neocortex. Biol Open. 2014;3(6):475-85
1*J:317479 Bizzotto S, Uzquiano A, Dingli F, Ershov D, Houllier A, Arras G, Richards M, Loew D, Minc N, Croquelois A, Houdusse A, Francis F, Eml1 loss impairs apical progenitor spindle length and soma shape in the developing cerebral cortex. Sci Rep. 2017 Dec 11;7(1):17308
1J:139969 Cain S, Martinez G, Kokkinos MI, Turner K, Richardson RJ, Abud HE, Huelsken J, Robinson ML, de Iongh RU, Differential requirement for beta-catenin in epithelial and fiber cells during lens development. Dev Biol. 2008 Sep 15;321(2):420-33
1J:196836 Cammas L, Wolfe J, Choi SY, Dedhar S, Beggs HE, Integrin-linked kinase deletion in the developing lens leads to capsule rupture, impaired fiber migration and non-apoptotic epithelial cell death. Invest Ophthalmol Vis Sci. 2012;53(6):3067-81
1J:294769 Collins SC, Uzquiano A, Selloum M, Wendling O, Gaborit M, Osipenko M, Birling MC, Yalcin B, Francis F, The neuroanatomy of Eml1 knockout mice, a model of subcortical heterotopia. J Anat. 2019 Sep;235(3):637-650
1J:340498 Fernandez-Santos B, Reyes-Corral M, Caro-Vega JM, Lao-Perez M, Vallejo-Grijalba C, Mesa-Cruz C, Moron FJ, Ybot-Gonzalez P, The loop-tail mouse model displays open and closed caudal neural tube defects. Dis Model Mech. 2023 Aug 1;16(8)
1J:215584 Gil-Sanz C, Landeira B, Ramos C, Costa MR, Muller U, Proliferative defects and formation of a double cortex in mice lacking Mltt4 and Cdh2 in the dorsal telencephalon. J Neurosci. 2014 Aug 6;34(32):10475-87
1J:208850 Hatakeyama J, Wakamatsu Y, Nagafuchi A, Kageyama R, Shigemoto R, Shimamura K, Cadherin-based adhesions in the apical endfoot are required for active Notch signaling to control neurogenesis in vertebrates. Development. 2014 Apr;141(8):1671-82
1*J:143548 Himes AD, Raetzman LT, Premature differentiation and aberrant movement of pituitary cells lacking both Hes1 and Prop1. Dev Biol. 2009 Jan 1;325(1):151-61
1J:238096 Houlihan SL, Lanctot AA, Guo Y, Feng Y, Upregulation of neurovascular communication through filamin abrogation promotes ectopic periventricular neurogenesis. Elife. 2016 Sep 24;5:e17823
1J:294837 Huang C, Liu T, Wang Q, Hou W, Zhou C, Song Z, Shi YS, Gao X, Chen G, Yin Z, Hu Y, Loss of PP2A Disrupts the Retention of Radial Glial Progenitors in the Telencephalic Niche to Impair the Generation for Late-Born Neurons During Cortical Development. Cereb Cortex. 2020 Jun 1;30(7):4183-4196
1*J:283394 Hughes LJ, Park R, Lee MJ, Terry BK, Lee DJ, Kim H, Cho SH, Kim S, Yap/Taz are required for establishing the cerebellar radial glia scaffold and proper foliation. Dev Biol. 2020 Jan 1;457(1):150-162
1J:333402 Ihermann-Hella A, Hirashima T, Kupari J, Kurtzeborn K, Li H, Kwon HN, Cebrian C, Soofi A, Dapkunas A, Miinalainen I, Dressler GR, Matsuda M, Kuure S, Dynamic MAPK/ERK Activity Sustains Nephron Progenitors through Niche Regulation and Primes Precursors for Differentiation. Stem Cell Reports. 2018 Oct 9;11(4):912-928
1J:163480 Johansson JK, Voss U, Kesavan G, Kostetskii I, Wierup N, Radice GL, Semb H, N-cadherin is dispensable for pancreas development but required for beta-cell granule turnover. Genesis. 2010 Jun;48(6):374-81
1J:134436 Kadowaki M, Nakamura S, Machon O, Krauss S, Radice GL, Takeichi M, N-cadherin mediates cortical organization in the mouse brain. Dev Biol. 2007 Apr 1;304(1):22-33
1*J:332214 Kaiser M, Ludtke TH, Deuper L, Rudat C, Christoffels VM, Kispert A, Trowe MO, TBX2 specifies and maintains inner hair and supporting cell fate in the Organ of Corti. Nat Commun. 2022 Dec 9;13(1):7628
1J:155751 Kang W, Wong LC, Shi SH, Hebert JM, The transition from radial glial to intermediate progenitor cell is inhibited by FGF signaling during corticogenesis. J Neurosci. 2009 Nov 18;29(46):14571-80
1J:172044 Katayama K, Melendez J, Baumann JM, Leslie JR, Chauhan BK, Nemkul N, Lang RA, Kuan CY, Zheng Y, Yoshida Y, Loss of RhoA in neural progenitor cells causes the disruption of adherens junctions and hyperproliferation. Proc Natl Acad Sci U S A. 2011 May 3;108(18):7607-12
1J:102364 Koike C, Nishida A, Akimoto K, Nakaya MA, Noda T, Ohno S, Furukawa T, Function of atypical protein kinase Clambda in differentiating photoreceptors is required for proper lamination of mouse retina. J Neurosci. 2005 Nov 2;25(44):10290-8
1J:306851 Kunii M, Noguchi Y, Yoshimura SI, Kanda S, Iwano T, Avriyanti E, Atik N, Sato T, Sato K, Ogawa M, Harada A, SNAP23 deficiency causes severe brain dysplasia through the loss of radial glial cell polarity. J Cell Biol. 2021 Jan 4;220(1)
1J:332318 Kwak M, Southard KM, Kim WR, Lin A, Kim NH, Gopalappa R, Lee HJ, An M, Choi SH, Jung Y, Noh K, Farlow J, Georgakopoulos A, Robakis NK, Kang MK, Kutys ML, Seo D, Kim HH, Kim YH, Cheon J, Gartner ZJ, Jun YW, Adherens junctions organize size-selective proteolytic hotspots critical for Notch signalling. Nat Cell Biol. 2022 Dec;24(12):1739-1753
1J:327598 Le TNU, Nguyen TQ, Kalailingam P, Nguyen YTK, Sukumar VK, Tan CKH, Tukijan F, Couty L, Hasan Z, Del Gaudio I, Wenk MR, Cazenave-Gassiot A, Camerer E, Nguyen LN, Mfsd2b and Spns2 are essential for maintenance of blood vessels during development and in anaphylactic shock. Cell Rep. 2022 Aug 16;40(7):111208
1J:171094 Li B, Zheng YW, Sano Y, Taniguchi H, Evidence for mesenchymal-epithelial transition associated with mouse hepatic stem cell differentiation. PLoS One. 2011;6(2):e17092
1J:139820 Lien WH, Klezovitch O, Null M, Vasioukhin V, alphaE-catenin is not a significant regulator of beta-catenin signaling in the developing mammalian brain. J Cell Sci. 2008 May 1;121(Pt 9):1357-62
1J:246153 Logan CM, Rajakaruna S, Bowen C, Radice GL, Robinson ML, Menko AS, N-cadherin regulates signaling mechanisms required for lens fiber cell elongation and lens morphogenesis. Dev Biol. 2017 Aug 01;428(1):118-134
1J:97478 Lu S, Borst DE, Horowits R, N-RAP expression during mouse heart development. Dev Dyn. 2005 May;233(1):201-12
1*J:213450 Machida A, Okuhara S, Harada K, Iseki S, Difference in apical and basal growth of the frontal bone primordium in Foxc1(ch/ch) mice. Congenit Anom (Kyoto). 2014 Aug;54(3):172-7
1J:126323 Machon O, Backman M, Machonova O, Kozmik Z, Vacik T, Andersen L, Krauss S, A dynamic gradient of Wnt signaling controls initiation of neurogenesis in the mammalian cortex and cellular specification in the hippocampus. Dev Biol. 2007 Nov 1;311(1):223-37
1*J:226036 Maddala R, Nagendran T, Lang RA, Morozov A, Rao PV, Rap1 GTPase is required for mouse lens epithelial maintenance and morphogenesis. Dev Biol. 2015 Oct 1;406(1):74-91
1J:240358 Maeta K, Edamatsu H, Nishihara K, Ikutomo J, Bilasy SE, Kataoka T, Crucial Role of Rapgef2 and Rapgef6, a Family of Guanine Nucleotide Exchange Factors for Rap1 Small GTPase, in Formation of Apical Surface Adherens Junctions and Neural Progenitor Development in the Mouse Cerebral Cortex. eNeuro. 2016 May-Jun;3(3):ENEURO.0142-16.2016
1J:235675 Martinez-Garay I, Gil-Sanz C, Franco SJ, Espinosa A, Molnar Z, Mueller U, Cadherin 2/4 signaling via PTP1B and catenins is crucial for nucleokinesis during radial neuronal migration in the neocortex. Development. 2016 Jun 15;143(12):2121-34
1J:69285 McCarthy M, Na E, Neyt C, Langston A, Fishell G, Calcium-dependent adhesion is necessary for the maintenance of prosomeres. Dev Biol. 2001 May 1;233(1):80-94
1J:242339 Ohayon D, Garces A, Joly W, Soukkarieh C, Takagi T, Sabourin JC, Agius E, Darling DS, De Santa Barbara P, Higashi Y, Stolt CC, Hugnot JP, Richardson WD, Carroll P, Pattyn A, Onset of Spinal Cord Astrocyte Precursor Emigration from the Ventricular Zone Involves the Zeb1 Transcription Factor. Cell Rep. 2016 Nov 01;17(6):1473-1481
1J:331057 Parichha A, Datta D, Suresh V, Chatterjee M, Holtzman MJ, Tole S, Dentate gyrus morphogenesis is regulated by beta-catenin function in hem-derived fimbrial glia. Development. 2022 Nov 1;149(21):dev200953
1J:131815 Pontoriero GF, Deschamps P, Ashery-Padan R, Wong R, Yang Y, Zavadil J, Cvekl A, Sullivan S, Williams T, West-Mays JA, Cell autonomous roles for AP-2alpha in lens vesicle separation and maintenance of the lens epithelial cell phenotype. Dev Dyn. 2008 Mar;237(3):602-17
1J:224861 Preusse K, Tveriakhina L, Schuster-Gossler K, Gaspar C, Rosa AI, Henrique D, Gossler A, Stauber M, Context-Dependent Functional Divergence of the Notch Ligands DLL1 and DLL4 In Vivo. PLoS Genet. 2015 Jun;11(6):e1005328
1J:243429 Rakotomamonjy J, Brunner M, Juschke C, Zang K, Huang EJ, Reichardt LF, Chenn A, Afadin controls cell polarization and mitotic spindle orientation in developing cortical radial glia. Neural Dev. 2017 May 08;12(1):7
1J:146692 Saint-Geniez M, Kurihara T, D'Amore PA, Role of cell and matrix-bound VEGF isoforms in lens development. Invest Ophthalmol Vis Sci. 2009 Jan;50(1):311-21
1J:154910 Sugiyama Y, Akimoto K, Robinson ML, Ohno S, Quinlan RA, A cell polarity protein aPKClambda is required for eye lens formation and growth. Dev Biol. 2009 Dec 15;336(2):246-56
1J:237527 Thein T, de Melo J, Zibetti C, Clark BS, Juarez F, Blackshaw S, Control of lens development by Lhx2-regulated neuroretinal FGFs. Development. 2016 Nov 01;143(21):3994-4002
1J:162625 Wu M, Smith CL, Hall JA, Lee I, Luby-Phelps K, Tallquist MD, Epicardial spindle orientation controls cell entry into the myocardium. Dev Cell. 2010 Jul 20;19(1):114-25
1J:209314 Yamamoto H, Maruo T, Majima T, Ishizaki H, Tanaka-Okamoto M, Miyoshi J, Mandai K, Takai Y, Genetic deletion of afadin causes hydrocephalus by destruction of adherens junctions in radial glial and ependymal cells in the midbrain. PLoS One. 2013;8(11):e80356
1J:251744 Zega K, Jovanovic VM, Vitic Z, Niedzielska M, Knaapi L, Jukic MM, Partanen J, Friedel RF, Lang R, Brodski C, Dusp16 Deficiency Causes Congenital Obstructive Hydrocephalus and Brain Overgrowth by Expansion of the Neural Progenitor Pool. Front Mol Neurosci. 2017;10:372
1J:283329 Zhang T, Hou C, Zhang S, Liu S, Li Z, Gao J, Lgl1 deficiency disrupts hippocampal development and impairs cognitive performance in mice. Genes Brain Behav. 2019 Nov;18(8):e12605
1J:276051 Zhang T, Zhang S, Song X, Zhao X, Hou C, Li Z, Gao J, Loss of Lgl1 Disrupts the Radial Glial Fiber-guided Cortical Neuronal Migration and Causes Subcortical Band Heterotopia in Mice. Neuroscience. 2019 Feb 21;400:132-145
1J:320908 Zheng F, Chen Z, Tang QL, Wang XY, Chong DY, Zhang TY, Gu YY, Hu ZB, Li CJ, Cholesterol metabolic enzyme Ggpps regulates epicardium development and ventricular wall architecture integrity in mice. J Mol Cell Biol. 2021 Sep 11;13(6):445-454
1*J:299732 Zhou X, Zhong S, Peng H, Liu J, Ding W, Sun L, Ma Q, Liu Z, Chen R, Wu Q, Wang X, Cellular and molecular properties of neural progenitors in the developing mammalian hypothalamus. Nat Commun. 2020 Aug 13;11(1):4063

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last database update
04/23/2024
MGI 6.23
The Jackson Laboratory