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Items: 1 to 20 of 219

1.

Genetic evidence does not support direct regulation of EDNRB by SOX10 in migratory neural crest and the melanocyte lineage.

Hakami RM, Hou L, Baxter LL, Loftus SK, Southard-Smith EM, Incao A, Cheng J, Pavan WJ.

Mech Dev. 2006 Feb;123(2):124-34. Epub 2006 Jan 18.

2.

Interactions between Sox10, Edn3 and Ednrb during enteric nervous system and melanocyte development.

Stanchina L, Baral V, Robert F, Pingault V, Lemort N, Pachnis V, Goossens M, Bondurand N.

Dev Biol. 2006 Jul 1;295(1):232-49. Epub 2006 Apr 3.

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Sox10 mutation disrupts neural crest development in Dom Hirschsprung mouse model.

Southard-Smith EM, Kos L, Pavan WJ.

Nat Genet. 1998 Jan;18(1):60-4.

PMID:
9425902
6.

Analysis of SOX10 function in neural crest-derived melanocyte development: SOX10-dependent transcriptional control of dopachrome tautomerase.

Potterf SB, Mollaaghababa R, Hou L, Southard-Smith EM, Hornyak TJ, Arnheiter H, Pavan WJ.

Dev Biol. 2001 Sep 15;237(2):245-57.

7.

The transcription factors Ets1 and Sox10 interact during murine melanocyte development.

Saldana-Caboverde A, Perera EM, Watkins-Chow DE, Hansen NF, Vemulapalli M, Mullikin JC; NISC Comparative Sequencing Program, Pavan WJ, Kos L.

Dev Biol. 2015 Nov 15;407(2):300-12. doi: 10.1016/j.ydbio.2015.04.012. Epub 2015 Apr 23.

8.

Cell-autonomous and cell non-autonomous signaling through endothelin receptor B during melanocyte development.

Hou L, Pavan WJ, Shin MK, Arnheiter H.

Development. 2004 Jul;131(14):3239-47. Epub 2004 Jun 16.

9.

A sensitized mutagenesis screen identifies Gli3 as a modifier of Sox10 neurocristopathy.

Matera I, Watkins-Chow DE, Loftus SK, Hou L, Incao A, Silver DL, Rivas C, Elliott EC, Baxter LL, Pavan WJ.

Hum Mol Genet. 2008 Jul 15;17(14):2118-31. doi: 10.1093/hmg/ddn110. Epub 2008 Apr 7.

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Functional difference of the SOX10 mutant proteins responsible for the phenotypic variability in auditory-pigmentary disorders.

Yokoyama S, Takeda K, Shibahara S.

J Biochem. 2006 Oct;140(4):491-9. Epub 2006 Aug 18.

PMID:
16921166
12.

Direct interaction of Sox10 with the promoter of murine Dopachrome Tautomerase (Dct) and synergistic activation of Dct expression with Mitf.

Jiao Z, Mollaaghababa R, Pavan WJ, Antonellis A, Green ED, Hornyak TJ.

Pigment Cell Res. 2004 Aug;17(4):352-62.

PMID:
15250937
13.

Differentiation of Mouse Enteric Nervous System Progenitor Cells Is Controlled by Endothelin 3 and Requires Regulation of Ednrb by SOX10 and ZEB2.

Watanabe Y, Stanchina L, Lecerf L, Gacem N, Conidi A, Baral V, Pingault V, Huylebroeck D, Bondurand N.

Gastroenterology. 2017 Apr;152(5):1139-1150.e4. doi: 10.1053/j.gastro.2016.12.034. Epub 2017 Jan 5.

PMID:
28063956
14.
15.

The transcription factor Sox5 modulates Sox10 function during melanocyte development.

Stolt CC, Lommes P, Hillgärtner S, Wegner M.

Nucleic Acids Res. 2008 Oct;36(17):5427-40. doi: 10.1093/nar/gkn527. Epub 2008 Aug 14.

16.

The transcription factor Sox10 is a key regulator of peripheral glial development.

Britsch S, Goerich DE, Riethmacher D, Peirano RI, Rossner M, Nave KA, Birchmeier C, Wegner M.

Genes Dev. 2001 Jan 1;15(1):66-78.

17.

Interactions between Sox10 and EdnrB modulate penetrance and severity of aganglionosis in the Sox10Dom mouse model of Hirschsprung disease.

Cantrell VA, Owens SE, Chandler RL, Airey DC, Bradley KM, Smith JR, Southard-Smith EM.

Hum Mol Genet. 2004 Oct 1;13(19):2289-301. Epub 2004 Aug 4. Erratum in: Hum Mol Genet. 2004 Dec 15;13(24):3241.

PMID:
15294878
18.

Identification of a distal enhancer for the melanocyte-specific promoter of the MITF gene.

Watanabe K, Takeda K, Yasumoto K, Udono T, Saito H, Ikeda K, Takasaka T, Takahashi K, Kobayashi T, Tachibana M, Shibahara S.

Pigment Cell Res. 2002 Jun;15(3):201-11.

PMID:
12028584
19.

Hypomorphic Sox10 alleles reveal novel protein functions and unravel developmental differences in glial lineages.

Schreiner S, Cossais F, Fischer K, Scholz S, Bösl MR, Holtmann B, Sendtner M, Wegner M.

Development. 2007 Sep;134(18):3271-81. Epub 2007 Aug 15.

20.

Sox10 regulates the development of neural crest-derived melanocytes in Xenopus.

Aoki Y, Saint-Germain N, Gyda M, Magner-Fink E, Lee YH, Credidio C, Saint-Jeannet JP.

Dev Biol. 2003 Jul 1;259(1):19-33.

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