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Items: 1 to 20 of 232

1.

Hindbrain patterning requires fine-tuning of early krox20 transcription by Sprouty 4.

Labalette C, Bouchoucha YX, Wassef MA, Gongal PA, Le Men J, Becker T, Gilardi-Hebenstreit P, Charnay P.

Development. 2011 Jan;138(2):317-26. doi: 10.1242/dev.057299.

2.

Krox20 hindbrain cis-regulatory landscape: interplay between multiple long-range initiation and autoregulatory elements.

Chomette D, Frain M, Cereghini S, Charnay P, Ghislain J.

Development. 2006 Apr;133(7):1253-62. Epub 2006 Feb 22.

3.
4.

Rostral hindbrain patterning involves the direct activation of a Krox20 transcriptional enhancer by Hox/Pbx and Meis factors.

Wassef MA, Chomette D, Pouilhe M, Stedman A, Havis E, Desmarquet-Trin Dinh C, Schneider-Maunoury S, Gilardi-Hebenstreit P, Charnay P, Ghislain J.

Development. 2008 Oct;135(20):3369-78. doi: 10.1242/dev.023614. Epub 2008 Sep 11.

5.

A functional interaction between Irx and Meis patterns the anterior hindbrain and activates krox20 expression in rhombomere 3.

Stedman A, Lecaudey V, Havis E, Anselme I, Wassef M, Gilardi-Hebenstreit P, Schneider-Maunoury S.

Dev Biol. 2009 Mar 15;327(2):566-77. doi: 10.1016/j.ydbio.2008.12.018. Epub 2008 Dec 25.

6.

FGF3 and FGF8 mediate a rhombomere 4 signaling activity in the zebrafish hindbrain.

Maves L, Jackman W, Kimmel CB.

Development. 2002 Aug;129(16):3825-37.

7.
8.

c-jun regulation and function in the developing hindbrain.

Mechta-Grigoriou F, Giudicelli F, Pujades C, Charnay P, Yaniv M.

Dev Biol. 2003 Jun 15;258(2):419-31.

9.

spiel ohne grenzen/pou2 is required for zebrafish hindbrain segmentation.

Hauptmann G, Belting HG, Wolke U, Lunde K, Söll I, Abdelilah-Seyfried S, Prince V, Driever W.

Development. 2002 Apr;129(7):1645-55.

10.

Equivalence in the genetic control of hindbrain segmentation in fish and mouse.

Moens CB, Cordes SP, Giorgianni MW, Barsh GS, Kimmel CB.

Development. 1998 Feb;125(3):381-91.

11.
12.

vhnf1 integrates global RA patterning and local FGF signals to direct posterior hindbrain development in zebrafish.

Hernandez RE, Rikhof HA, Bachmann R, Moens CB.

Development. 2004 Sep;131(18):4511-20.

13.

Molecular dissection of segment formation in the developing hindbrain.

Labalette C, Wassef MA, Desmarquet-Trin Dinh C, Bouchoucha YX, Le Men J, Charnay P, Gilardi-Hebenstreit P.

Development. 2015 Jan 1;142(1):185-95. doi: 10.1242/dev.109652.

14.

Dissection of a Krox20 positive feedback loop driving cell fate choices in hindbrain patterning.

Bouchoucha YX, Reingruber J, Labalette C, Wassef MA, Thierion E, Desmarquet-Trin Dinh C, Holcman D, Gilardi-Hebenstreit P, Charnay P.

Mol Syst Biol. 2013;9:690. doi: 10.1038/msb.2013.46.

15.

Neural crest patterning: autoregulatory and crest-specific elements co-operate for Krox20 transcriptional control.

Ghislain J, Desmarquet-Trin-Dinh C, Gilardi-Hebenstreit P, Charnay P, Frain M.

Development. 2003 Mar;130(5):941-53.

16.

Independent regulation of initiation and maintenance phases of Hoxa3 expression in the vertebrate hindbrain involve auto- and cross-regulatory mechanisms.

Manzanares M, Bel-Vialar S, Ariza-McNaughton L, Ferretti E, Marshall H, Maconochie MM, Blasi F, Krumlauf R.

Development. 2001 Sep;128(18):3595-607.

17.

An early Fgf signal required for gene expression in the zebrafish hindbrain primordium.

Roy NM, Sagerström CG.

Brain Res Dev Brain Res. 2004 Jan 31;148(1):27-42.

PMID:
14757516
18.

nlz gene family is required for hindbrain patterning in the zebrafish.

Hoyle J, Tang YP, Wiellette EL, Wardle FC, Sive H.

Dev Dyn. 2004 Apr;229(4):835-46.

19.

Novel activities of Mafb underlie its dual role in hindbrain segmentation and regional specification.

Giudicelli F, Gilardi-Hebenstreit P, Mechta-Grigoriou F, Poquet C, Charnay P.

Dev Biol. 2003 Jan 1;253(1):150-62.

20.

Differences in Krox20-dependent regulation of Hoxa2 and Hoxb2 during hindbrain development.

Maconochie MK, Nonchev S, Manzanares M, Marshall H, Krumlauf R.

Dev Biol. 2001 May 15;233(2):468-81.

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