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Gene Expression Literature Summary
neural cell adhesion molecule 1

245 matching records from 245 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 E4 E4.5 E6.5 E7 E7.5 E8 E8.5 E9 E9.5 E10 E10.5 E11 E11.5 E12 E12.5 E13 E13.5 E14 E14.5 E15 E15.5 E16 E16.5 E17 E17.5 E18 E18.5 E19 E20 E A
In situ protein (section) 1 1 1 1 3 4 7 1 8 3 14 7 24 13 23 9 23 7 18 7 18 6 16 9 21 2 1 9 79
In situ RNA (section) 2 1 1 3 4 3 5 2 5 1 8 3 8 2 4 1 5 5 2 3 2 11
In situ protein (whole mount) 2 2 1 1 2 1 1 1 1 1 2 1 1 2 1 1 3
In situ RNA (whole mount) 1 1 1 1 1 1
In situ reporter (knock in) 1 1
Northern blot 1 1 1 1 1 1 1 1 1 3
Western blot 1 1 2 4 2 1 1 1 1 3 2 2 1 2 1 1 10
RT-PCR 1 1 1 1 1 2 1 2 1 1 2 1 1 1 1 2 1 2 1 2 1 3 7
cDNA clones 1 1 1 1 1
RNase protection 1
Nuclease S1 1 1

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
Ncam1  neural cell adhesion molecule 1   (Synonyms: CD56, E-NCAM, NCAM, NCAM-1, NCAM-120, NCAM-140, NCAM-180)
Results  Reference
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4*J:29480 Aoki K, Osumi-Yamashita N, Ninomiya Y, Eto K, Differential expression of N-CAM, vimentin and MAP1B during initial pathfinding of olfactory receptor neurons in the mouse embryo. Anat Embryol (Berl). 1995 Sep;192(3):211-20
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11*J:4658 Bally-Cuif L, Goridis C, Santoni MJ, The mouse NCAM gene displays a biphasic expression pattern during neural tube development. Development. 1993 Feb;117(2):543-52
3J:102255 Balmer CW, LaMantia AS, Noses and neurons: induction, morphogenesis, and neuronal differentiation in the peripheral olfactory pathway. Dev Dyn. 2005 Nov;234(3):464-81
2J:109287 Balmer CW, LaMantia AS, Loss of Gli3 and Shh function disrupts olfactory axon trajectories. J Comp Neurol. 2004 May 3;472(3):292-307
1J:110710 Bani-Yaghoub M, Tremblay RG, Lei JX, Zhang D, Zurakowski B, Sandhu JK, Smith B, Ribecco-Lutkiewicz M, Kennedy J, Walker PR, Sikorska M, Role of Sox2 in the development of the mouse neocortex. Dev Biol. 2006 Jul 1;295(1):52-66
1J:185582 Barak H, Huh SH, Chen S, Jeanpierre C, Martinovic J, Parisot M, Bole-Feysot C, Nitschke P, Salomon R, Antignac C, Ornitz DM, Kopan R, FGF9 and FGF20 Maintain the Stemness of Nephron Progenitors in Mice and Man. Dev Cell. 2012 Jun 12;22(6):1191-207
3J:73206 Bard JB, Gordon A, Sharp L, Sellers WI, Early nephron formation in the developing mouse kidney. J Anat. 2001 Oct;199(Pt 4):385-92
1J:199435 Barraud P, St John JA, Stolt CC, Wegner M, Baker CV, Olfactory ensheathing glia are required for embryonic olfactory axon targeting and the migration of gonadotropin-releasing hormone neurons. Biol Open. 2013 Jul 15;2(7):750-9
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1J:108618 Carson C, Murdoch B, Roskams AJ, Notch 2 and Notch 1/3 segregate to neuronal and glial lineages of the developing olfactory epithelium. Dev Dyn. 2006 Jun;235(6):1678-88
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2*J:100438 Chen HW, Chen JJ, Yu SL, Li HN, Yang PC, Su CM, Au HK, Chang CW, Chien LW, Chen CS, Tzeng CR, Transcriptome analysis in blastocyst hatching by cDNA microarray. Hum Reprod. 2005 Sep;20(9):2492-501
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1*J:83933 Cheng A, Wang S, Cai J, Rao MS, Mattson MP, Nitric oxide acts in a positive feedback loop with BDNF to regulate neural progenitor cell proliferation and differentiation in the mammalian brain. Dev Biol. 2003 Jun 15;258(2):319-33
1J:119907 Cheng HT, Kim M, Valerius MT, Surendran K, Schuster-Gossler K, Gossler A, McMahon AP, Kopan R, Notch2, but not Notch1, is required for proximal fate acquisition in the mammalian nephron. Development. 2007 Feb;134(4):801-11
1J:122275 Cheng LE, Reed RR, Zfp423/OAZ participates in a developmental switch during olfactory neurogenesis. Neuron. 2007 May 24;54(4):547-57
1J:203312 Chi L, Galtseva A, Chen L, Mo R, Hui CC, Rosenblum ND, Kif3a controls murine nephron number via GLI3 repressor, cell survival, and gene expression in a lineage-specific manner. PLoS One. 2013;8(6):e65448
1J:133461 Choi PS, Zakhary L, Choi WY, Caron S, Alvarez-Saavedra E, Miska EA, McManus M, Harfe B, Giraldez AJ, Horvitz RH, Schier AF, Dulac C, Members of the miRNA-200 family regulate olfactory neurogenesis. Neuron. 2008 Jan 10;57(1):41-55
7*J:71338 Chung WW, Lagenaur CF, Yan YM, Lund JS, Developmental expression of neural cell adhesion molecules in the mouse neocortex and olfactory bulb. J Comp Neurol. 1991 Dec 8;314(2):290-305
3J:74090 Clarris HJ, Key B, Expression of glycoproteins in the vomeronasal organ reveals a novel spatiotemporal pattern of sensory neurone maturation. J Neurobiol. 2001 Feb 5;46(2):113-25
2J:63083 Clarris HJ, Rauch U, Key B, Dynamic spatiotemporal expression patterns of neurocan and phosphacan indicate diverse roles in the developing and adult mouse olfactory system. J Comp Neurol. 2000 Jul 17;423(1):99-111
1J:122528 Col JA, Matsuo T, Storm DR, Rodriguez I, Adenylyl cyclase-dependent axonal targeting in the olfactory system. Development. 2007 Jul;134(13):2481-9
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2J:90572 Cowan CM, Roskams AJ, Caspase-3 and caspase-9 mediate developmental apoptosis in the mouse olfactory system. J Comp Neurol. 2004 Jun 14;474(1):136-48
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5J:47986 Dellovade TL, Pfaff DW, Schwanzel-Fukuda M, The gonadotropin-releasing hormone system does not develop in Small-Eye (Sey) mouse phenotype. Brain Res Dev Brain Res. 1998 May 15;107(2):233-40
2J:103453 Denaxa M, Kyriakopoulou K, Theodorakis K, Trichas G, Vidaki M, Takeda Y, Watanabe K, Karagogeos D, The adhesion molecule TAG-1 is required for proper migration of the superficial migratory stream in the medulla but not of cortical interneurons. Dev Biol. 2005 Dec 1;288(1):87-99
1J:121970 Deng S, Hirschberg A, Worzfeld T, Penachioni JY, Korostylev A, Swiercz JM, Vodrazka P, Mauti O, Stoeckli ET, Tamagnone L, Offermanns S, Kuner R, Plexin-B2, but not Plexin-B1, critically modulates neuronal migration and patterning of the developing nervous system in vivo. J Neurosci. 2007 Jun 6;27(23):6333-47
1J:108241 Desai J, Shannon ME, Johnson MD, Ruff DW, Hughes LA, Kerley MK, Carpenter DA, Johnson DK, Rinchik EM, Culiat CT, Nell1-deficient mice have reduced expression of extracellular matrix proteins causing cranial and vertebral defects. Hum Mol Genet. 2006 Apr 15;15(8):1329-41
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2J:98364 Gamble JA, Karunadasa DK, Pape JR, Skynner MJ, Todman MG, Bicknell RJ, Allen JP, Herbison AE, Disruption of ephrin signaling associates with disordered axophilic migration of the gonadotropin-releasing hormone neurons. J Neurosci. 2005 Mar 23;25(12):3142-50
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5J:103123 Kawauchi S, Shou J, Santos R, Hebert JM, McConnell SK, Mason I, Calof AL, Fgf8 expression defines a morphogenetic center required for olfactory neurogenesis and nasal cavity development in the mouse. Development. 2005 Dec;132(23):5211-23
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1J:127453 Kettunen P, Spencer-Dene B, Furmanek T, Kvinnsland IH, Dickson C, Thesleff I, Luukko K, Fgfr2b mediated epithelial-mesenchymal interactions coordinate tooth morphogenesis and dental trigeminal axon patterning. Mech Dev. 2007 Nov-Dec;124(11-12):868-83
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1*J:95365 Kim MH, Gunnersen JM, Tan SS, Mph2 expression in germinal zones of the mouse brain. Dev Dyn. 2005 Jan;232(1):209-15
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