Symbol Name ID |
Dcc
DCC netrin 1 receptor MGI:94869 |
Age | E8.5 | 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 | E | P |
Immunohistochemistry (section) | 1 | 9 | 7 | 22 | 5 | 14 | 5 | 10 | 2 | 11 | 2 | 9 | 2 | 16 | 4 | 1 | 14 | 1 | 3 | 17 | |||
In situ RNA (section) | 1 | 2 | 1 | 4 | 1 | 12 | 3 | 16 | 1 | 12 | 3 | 17 | 2 | 15 | 2 | 8 | 2 | 5 | 9 | 7 | 9 | ||
Immunohistochemistry (whole mount) | 1 | 1 | 1 | 1 | |||||||||||||||||||
In situ RNA (whole mount) | 2 | 1 | 2 | 1 | 2 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | ||||||||||
Northern blot | 1 | 1 | 1 | 1 | |||||||||||||||||||
Western blot | 8 | 4 | 4 | 1 | 5 | 3 | 3 | 1 | 1 | 1 | 3 | 9 | |||||||||||
RT-PCR | 2 | 1 | 2 | 4 | 1 | 7 | 1 | 5 | 6 | 1 | 4 | 3 | 3 | 1 | 3 | 1 | 7 | ||||||
cDNA clones | 1 | 1 | 1 | 3 | |||||||||||||||||||
RNase protection | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 |
Dcc DCC netrin 1 receptor (Synonyms: C030036D22Rik, deleted in colorectal carcinoma, Igdcc1) | |
Results | Reference |
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1 | J:170280 Andrusiak MG, McClellan KA, Dugal-Tessier D, Julian LM, Rodrigues SP, Park DS, Kennedy TE, Slack RS, Rb/E2F regulates expression of neogenin during neuronal migration. Mol Cell Biol. 2011 Jan;31(2):238-47 |
1 | J:125289 Backer S, Hidalgo-Sanchez M, Offner N, Portales-Casamar E, Debant A, Fort P, Gauthier-Rouviere C, Bloch-Gallego E, Trio controls the mature organization of neuronal clusters in the hindbrain. J Neurosci. 2007 Sep 26;27(39):10323-32 |
1 | J:257081 Bai G, Chivatakarn O, Bonanomi D, Lettieri K, Franco L, Xia C, Stein E, Ma L, Lewcock JW, Pfaff SL, Presenilin-dependent receptor processing is required for axon guidance. Cell. 2011 Jan 7;144(1):106-18 |
8* | J:65295 Barallobre MJ, Del Rio JA, Alcantara S, Borrell V, Aguado F, Ruiz M, Carmona MA, Martin M, Fabre M, Yuste R, Tessier-Lavigne M, Soriano E, Aberrant development of hippocampal circuits and altered neural activity in netrin 1-deficient mice. Development. 2000 Nov;127(22):4797-810 |
1* | J:313619 Bedogni F, Hevner RF, Cell-Type-Specific Gene Expression in Developing Mouse Neocortex: Intermediate Progenitors Implicated in Axon Development. Front Mol Neurosci. 2021;14:686034 |
1 | J:218756 Belle M, Godefroy D, Dominici C, Heitz-Marchaland C, Zelina P, Hellal F, Bradke F, Chedotal A, A simple method for 3D analysis of immunolabeled axonal tracts in a transparent nervous system. Cell Rep. 2014 Nov 20;9(4):1191-201 |
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2 | J:227232 Bin JM, Han D, Lai Wing Sun K, Croteau LP, Dumontier E, Cloutier JF, Kania A, Kennedy TE, Complete Loss of Netrin-1 Results in Embryonic Lethality and Severe Axon Guidance Defects without Increased Neural Cell Death. Cell Rep. 2015 Aug 18;12(7):1099-106 |
1* | J:60855 Birgbauer E, Cowan CA, Sretavan DW, Henkemeyer M, Kinase independent function of EphB receptors in retinal axon pathfinding to the optic disc from dorsal but not ventral retina. Development. 2000 Mar;127(6):1231-41 |
9 | J:79506 Bloch-Gallego E, Ezan F, Tessier-Lavigne M, Sotelo C, Floor plate and netrin-1 are involved in the migration and survival of inferior olivary neurons. J Neurosci. 1999 Jun 1;19(11):4407-20 |
1 | J:276248 Bonanomi D, Valenza F, Chivatakarn O, Sternfeld MJ, Driscoll SP, Aslanian A, Lettieri K, Gullo M, Badaloni A, Lewcock JW, Hunter T, Pfaff SL, p190RhoGAP Filters Competing Signals to Resolve Axon Guidance Conflicts. Neuron. 2019 May 8;102(3):602-620.e9 |
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2 | J:309347 Botella-Lopez A, Garcia-Lopez R, Pombero A, Martinez S, Radial glia fibers translate Fgf8 morphogenetic signals to generate a thalamic nuclear complex protomap in the mantle layer. Brain Struct Funct. 2019 Mar;224(2):661-679 |
1 | J:317467 Bourojeni FB, Zeilhofer HU, Kania A, Netrin-1 receptor DCC is required for the contralateral topography of lamina I anterolateral system neurons. Pain. 2021 Jan;162(1):161-175 |
1 | J:266702 Boyer NP, Monkiewicz C, Menon S, Moy SS, Gupton SL, Mammalian TRIM67 Functions in Brain Development and Behavior. eNeuro. 2018 May-Jun;5(3):ENEURO.0186-18.2018 |
1* | J:63609 Braisted JE, Catalano SM, Stimac R, Kennedy TE, Tessier-Lavigne M, Shatz CJ, O'Leary DD, Netrin-1 promotes thalamic axon growth and is required for proper development of the thalamocortical projection. J Neurosci. 2000 Aug 1;20(15):5792-801 |
3 | J:134213 Briancon-Marjollet A, Ghogha A, Nawabi H, Triki I, Auziol C, Fromont S, Piche C, Enslen H, Chebli K, Cloutier JF, Castellani V, Debant A, Lamarche-Vane N, Trio mediates netrin-1-induced Rac1 activation in axon outgrowth and guidance. Mol Cell Biol. 2008 Apr;28(7):2314-23 |
6 | J:297714 Brignani S, Raj DDA, Schmidt ERE, Dudukcu O, Adolfs Y, De Ruiter AA, Rybiczka-Tesulov M, Verhagen MG, van der Meer C, Broekhoven MH, Moreno-Bravo JA, Grossouw LM, Dumontier E, Cloutier JF, Chedotal A, Pasterkamp RJ, Remotely Produced and Axon-Derived Netrin-1 Instructs GABAergic Neuron Migration and Dopaminergic Substantia Nigra Development. Neuron. 2020 Aug 19;107(4):684-702.e9 |
2 | J:311855 Brudvig JJ, Cain JT, Schmidt-Grimminger GG, Stumpo DJ, Roux KJ, Blackshear PJ, Weimer JM, MARCKS Is Necessary for Netrin-DCC Signaling and Corpus Callosum Formation. Mol Neurobiol. 2018 Nov;55(11):8388-8402 |
2 | J:100324 Bulfone A, Carotenuto P, Faedo A, Aglio V, Garzia L, Bello AM, Basile A, Andre A, Cocchia M, Guardiola O, Ballabio A, Rubenstein JL, Zollo M, Telencephalic embryonic subtractive sequences: a unique collection of neurodevelopmental genes. J Neurosci. 2005 Aug 17;25(33):7586-600 |
1 | J:188327 Charoy C, Nawabi H, Reynaud F, Derrington E, Bozon M, Wright K, Falk J, Helmbacher F, Kindbeiter K, Castellani V, gdnf Activates Midline Repulsion by Semaphorin3B via NCAM during Commissural Axon Guidance. Neuron. 2012 Sep 20;75(6):1051-66 |
4 | J:103829 Chen B, Schaevitz LR, McConnell SK, Fezl regulates the differentiation and axon targeting of layer 5 subcortical projection neurons in cerebral cortex. Proc Natl Acad Sci U S A. 2005 Nov 22;102(47):17184-9 |
4* | J:308673 Company V, Andreu-Cervera A, Madrigal MP, Andres B, Almagro-Garcia F, Chedotal A, Lopez-Bendito G, Martinez S, Echevarria D, Moreno-Bravo JA, Puelles E, Netrin 1-Mediated Role of the Substantia Nigra Pars Compacta and Ventral Tegmental Area in the Guidance of the Medial Habenular Axons. Front Cell Dev Biol. 2021;9:682067 |
1 | J:312488 Company V, Moreno-Cerda A, Andreu-Cervera A, Murcia-Ramon R, Almagro-Garcia F, Echevarria D, Martinez S, Puelles E, Wnt1 Role in the Development of the Habenula and the Fasciculus Retroflexus. Front Cell Dev Biol. 2021;9:755729 |
1* | J:332104 Company V, Murcia-Ramon R, Andreu-Cervera A, Aracil-Pastor P, Almagro-Garcia F, Martinez S, Echevarria D, Puelles E, Adhesion molecule Amigo2 is involved in the fasciculation process of the fasciculus retroflexus. Dev Dyn. 2022 Nov;251(11):1834-1847 |
29* | J:30261 Cooper HM, Armes P, Britto J, Gad J, Wilks AF, Cloning of the mouse homologue of the deleted in colorectal cancer gene (mDCC) and its expression in the developing mouse embryo. Oncogene. 1995 Dec 7;11(11):2243-54 |
3 | J:207646 Cotrufo T, Andres RM, Ros O, Perez-Branguli F, Muhaisen A, Fuschini G, Martinez R, Pascual M, Comella JX, Soriano E, Syntaxin 1 is required for DCC/Netrin-1-dependent chemoattraction of migrating neurons from the lower rhombic lip. Eur J Neurosci. 2012 Nov;36(9):3152-64 |
2 | J:177410 Cotrufo T, Perez-Branguli F, Muhaisen A, Ros O, Andres R, Baeriswyl T, Fuschini G, Tarrago T, Pascual M, Urena J, Blasi J, Giralt E, Stoeckli ET, Soriano E, A Signaling Mechanism Coupling Netrin-1/Deleted in Colorectal Cancer Chemoattraction to SNARE-Mediated Exocytosis in Axonal Growth Cones. J Neurosci. 2011 Oct 12;31(41):14463-14480 |
1 | J:271200 da Silva RV, Johannssen HC, Wyss MT, Roome RB, Bourojeni FB, Stifani N, Marsh APL, Ryan MM, Lockhart PJ, Leventer RJ, Richards LJ, Rosenblatt B, Srour M, Weber B, Zeilhofer HU, Kania A, DCC Is Required for the Development of Nociceptive Topognosis in Mice and Humans. Cell Rep. 2018 Jan 30;22(5):1105-1114 |
3 | J:336857 Dailey-Krempel B, Martin AL, Jo HN, Junge HJ, Chen Z, A tug of war between DCC and ROBO1 signaling during commissural axon guidance. Cell Rep. 2023 May 30;42(5):112455 |
11* | J:84360 Dalvin S, Anselmo MA, Prodhan P, Komatsuzaki K, Schnitzer JJ, Kinane TB, Expression of Netrin-1 and its two receptors DCC and UNC5H2 in the developing mouse lung. Gene Expr Patterns. 2003 Jun;3(3):279-83 |
3 | J:282348 Dasgupta K, Chung JU, Asam K, Jeong J, Molecular patterning of the embryonic cranial mesenchyme revealed by genome-wide transcriptional profiling. Dev Biol. 2019 Nov 15;455(2):434-448 |
1* | J:73773 de Diego I, Kyriakopoulou K, Karagogeos D, Wassef M, Multiple influences on the migration of precerebellar neurons in the caudal medulla. Development. 2002 Jan;129(2):297-306 |
1* | J:43652 Deiner MS, Kennedy TE, Fazeli A, Serafini T, Tessier-Lavigne M , Sretavan DW, Netrin-1 and DCC mediate axon guidance locally at the optic disc: loss of function leads to optic nerve hypoplasia. Neuron. 1997 Sep;19(3):575-89 |
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1 | J:98501 Ding YQ, Kim JY, Xu YS, Rao Y, Chen ZF, Ventral migration of early-born neurons requires Dcc and is essential for the projections of primary afferents in the spinal cord. Development. 2005 May;132(9):2047-56 |
2 | J:249067 Dominici C, Moreno-Bravo JA, Puiggros SR, Rappeneau Q, Rama N, Vieugue P, Bernet A, Mehlen P, Chedotal A, Floor-plate-derived netrin-1 is dispensable for commissural axon guidance. Nature. 2017 May 18;545(7654):350-354 |
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1 | J:235155 Doucet-Beaupre H, Gilbert C, Profes MS, Chabrat A, Pacelli C, Giguere N, Rioux V, Charest J, Deng Q, Laguna A, Ericson J, Perlmann T, Ang SL, Cicchetti F, Parent M, Trudeau LE, Levesque M, Lmx1a and Lmx1b regulate mitochondrial functions and survival of adult midbrain dopaminergic neurons. Proc Natl Acad Sci U S A. 2016 Jul 26;113(30):E4387-96 |
1 | J:238334 Dragich JM, Kuwajima T, Hirose-Ikeda M, Yoon MS, Eenjes E, Bosco JR, Fox LM, Lystad AH, Oo TF, Yarygina O, Mita T, Waguri S, Ichimura Y, Komatsu M, Simonsen A, Burke RE, Mason CA, Yamamoto A, Autophagy linked FYVE (Alfy/WDFY3) is required for establishing neuronal connectivity in the mammalian brain. Elife. 2016 Sep 20;5:e14810 |
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1 | J:39765 Fazeli A, Dickinson SL, Hermiston ML, Tighe RV, Steen RG, Small CG, Stoeckli ET, Keino-Masu K, Masu M, Rayburn H, Simons J, Bronson RT, Gordon JI, Tessier-Lavigne M, Weinberg RA, Phenotype of mice lacking functional Deleted in colorectal cancer (Dcc) gene. Nature. 1997 Apr 24;386(6627):796-804 |
1 | J:333967 Filova I, Pysanenko K, Tavakoli M, Vochyanova S, Dvorakova M, Bohuslavova R, Smolik O, Fabriciova V, Hrabalova P, Benesova S, Valihrach L, Cerny J, Yamoah EN, Syka J, Fritzsch B, Pavlinkova G, ISL1 is necessary for auditory neuron development and contributes toward tonotopic organization. Proc Natl Acad Sci U S A. 2022 Sep 13;119(37):e2207433119 |
10* | J:62806 Gad JM, Keeling SL, Shu T, Richards LJ, Cooper HM, The spatial and temporal expression patterns of netrin receptors, DCC and neogenin, in the developing mouse retina. Exp Eye Res. 2000 Jun;70(6):711-22 |
10* | J:45336 Gad JM, Keeling SL, Wilks AF, Tan SS, Cooper HM, The expression patterns of guidance receptors, DCC and Neogenin, are spatially and temporally distinct throughout mouse embryogenesis. Dev Biol. 1997 Dec 15;192(2):258-73 |
4* | J:309045 Garcia-Guillen IM, Alonso A, Morales-Delgado N, Andres B, Puelles L, Lopez-Bendito G, Marin F, Aroca P, Netrin-1/DCC Signaling Differentially Regulates the Migration of Pax7, Nkx6.1, Irx2, Otp, and Otx2 Cell Populations in the Developing Interpeduncular Nucleus. Front Cell Dev Biol. 2020;8:588851 |
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1 | J:139385 Geisen MJ, Di Meglio T, Pasqualetti M, Ducret S, Brunet JF, Chedotal A, Rijli FM, Hox paralog group 2 genes control the migration of mouse pontine neurons through slit-robo signaling. PLoS Biol. 2008 Jun 10;6(6):e142 |
3 | J:204665 Goldman JS, Ashour MA, Magdesian MH, Tritsch NX, Harris SN, Christofi N, Chemali R, Stern YE, Thompson-Steckel G, Gris P, Glasgow SD, Grutter P, Bouchard JF, Ruthazer ES, Stellwagen D, Kennedy TE, Netrin-1 promotes excitatory synaptogenesis between cortical neurons by initiating synapse assembly. J Neurosci. 2013 Oct 30;33(44):17278-89 |
2 | J:290598 Gorla M, Santiago C, Chaudhari K, Layman AAK, Oliver PM, Bashaw GJ, Ndfip Proteins Target Robo Receptors for Degradation and Allow Commissural Axons to Cross the Midline in the Developing Spinal Cord. Cell Rep. 2019 Mar 19;26(12):3298-3312.e4 |
1 | J:83744 Graef IA, Wang F, Charron F, Chen L, Neilson J, Tessier-Lavigne M, Crabtree GR, Neurotrophins and netrins require calcineurin/NFAT signaling to stimulate outgrowth of embryonic axons. Cell. 2003 May 30;113(5):657-70 |
1* | J:229257 Gu Z, Imai F, Kim IJ, Fujita H, Katayama Ki, Mori K, Yoshihara Y, Yoshida Y, Expression of the immunoglobulin superfamily cell adhesion molecules in the developing spinal cord and dorsal root ganglion. PLoS One. 2015;10(3):e0121550 |
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1 | J:226761 He W, Bai G, Zhou H, Wei N, White NM, Lauer J, Liu H, Shi Y, Dumitru CD, Lettieri K, Shubayev V, Jordanova A, Guergueltcheva V, Griffin PR, Burgess RW, Pfaff SL, Yang XL, CMT2D neuropathy is linked to the neomorphic binding activity of glycyl-tRNA synthetase. Nature. 2015 Oct 29;526(7575):710-4 |
1* | J:47081 Helms AW, Johnson JE, Progenitors of dorsal commissural interneurons are defined by MATH1 expression. Development. 1998 Mar;125(5):919-28 |
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 |
2 | J:278733 Hossain MM, Tsuzuki T, Sakakibara K, Imaizumi F, Ikegaya A, Inagaki M, Takahashi I, Ito T, Takamatsu H, Kumanogoh A, Negishi T, Yukawa K, PlexinA1 is crucial for the midline crossing of callosal axons during corpus callosum development in BALB/cAJ mice. PLoS One. 2019;14(8):e0221440 |
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4* | J:261685 Jamuar SS, Schmitz-Abe K, D'Gama AM, Drottar M, Chan WM, Peeva M, Servattalab S, Lam AN, Delgado MR, Clegg NJ, Zayed ZA, Dogar MA, Alorainy IA, Jamea AA, Abu-Amero K, Griebel M, Ward W, Lein ES, Markianos K, Barkovich AJ, Robson CD, Grant PE, Bosley TM, Engle EC, Walsh CA, Yu TW, Biallelic mutations in human DCC cause developmental split-brain syndrome. Nat Genet. 2017 Apr;49(4):606-612 |
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1 | J:306163 Ji S, Yang Z, Gozali L, Kenney T, Kocabas A, Jinsook Park C, Hynes M, Distinct expression of select and transcriptome-wide isolated 3'UTRs suggests critical roles in development and transition states. PLoS One. 2021;16(5):e0250669 |
9* | J:131673 Jiang Y, Liu MT, Gershon MD, Netrins and DCC in the guidance of migrating neural crest-derived cells in the developing bowel and pancreas. Dev Biol. 2003 Jun 15;258(2):364-84 |
1 | J:267476 Kang DS, Yang YR, Lee C, Park B, Park KI, Seo JK, Seo YK, Cho H, Lucio C, Suh PG, Netrin-1/DCC-mediated PLCgamma1 activation is required for axon guidance and brain structure development. EMBO Rep. 2018 Nov;19(11) |
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1 | J:219821 Kim M, Fontelonga T, Roesener AP, Lee H, Gurung S, Mendonca PR, Mastick GS, Motor neuron cell bodies are actively positioned by Slit/Robo repulsion and Netrin/DCC attraction. Dev Biol. 2015 Mar 1;399(1):68-79 |
1 | J:252093 Kim M, Fontelonga TM, Lee CH, Barnum SJ, Mastick GS, Motor axons are guided to exit points in the spinal cord by Slit and Netrin signals. Dev Biol. 2017 Dec 1;432(1):178-191 |
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3 | J:240528 Kocabas A, Duarte T, Kumar S, Hynes MA, Widespread Differential Expression of Coding Region and 3' UTR Sequences in Neurons and Other Tissues. Neuron. 2015 Dec 16;88(6):1149-56 |
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1 | J:217604 Lavado A, Ware M, Pare J, Cao X, The tumor suppressor Nf2 regulates corpus callosum development by inhibiting the transcriptional coactivator Yap. Development. 2014 Nov;141(21):4182-93 |
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3 | J:234106 Leggere JC, Saito Y, Darnell RB, Tessier-Lavigne M, Junge HJ, Chen Z, NOVA regulates Dcc alternative splicing during neuronal migration and axon guidance in the spinal cord. Elife. 2016;5:e14264 |
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