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Summary Expression Gene Literature (258) GO Terms (5) Nucleotides (57) Proteins (22) Interactants (817) Wiki
XB--853289

Papers associated with egr2

Search for egr2 morpholinos using Textpresso

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83 paper(s) referencing morpholinos

Results 1 - 20 of 258 results

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Znf703, a novel target of Pax3 and Zic1, regulates hindbrain and neural crest development in Xenopus.
Hong CS, Saint-Jeannet JP.
Genesis. October 31, 2017;

Developmental neurogenesis in mouse and Xenopus is impaired in the absence of Nosip.
Hoffmeister M, Krieg J, Ehrke A, Seigfried FA, Wischmann L, Dietmann P, Kühl SJ, Oess S.
Dev Biol. September 1, 2017; 429 (1): 200-212.

no privacy, a Xenopus tropicalis mutant, is a model of human Hermansky-Pudlak Syndrome and allows visualization of internal organogenesis during tadpole development.
Nakayama T, Nakajima K, Cox A, Fisher M, Howell M, Fish MB, Yaoita Y, Grainger RM.
Dev Biol. June 15, 2017; 426 (2): 472-486.

sall1 and sall4 repress pou5f3 family expression to allow neural patterning, differentiation, and morphogenesis in Xenopus laevis.
Exner CRT, Kim AY, Mardjuki SM, Harland RM.
Dev Biol. May 1, 2017; 425 (1): 33-43.

The Nedd4 binding protein 3 is required for anterior neural development in Xenopus laevis.
Kiem LM, Dietmann P, Linnemann A, Schmeisser MJ, Kühl SJ.
Dev Biol. March 1, 2017; 423 (1): 66-76.

Tbx2 regulates anterior neural specification by repressing FGF signaling pathway.
Cho GS, Park DS, Choi SC, Han JK.
Dev Biol. January 15, 2017; 421 (2): 183-193.

FoxD1 protein interacts with Wnt and BMP signaling to differentially pattern mesoderm and neural tissue.
Polevoy H, Malyarova A, Fonar Y, Elias S, Frank D.
Int J Dev Biol. January 1, 2017; 61 (3-4-5): 293-302.

EphA7 modulates apical constriction of hindbrain neuroepithelium during neurulation in Xenopus.
Wang X, Sun J, Li C, Mao B.
Biochem Biophys Res Commun. October 28, 2016; 479 (4): 759-765.

Chlorpyrifos exposure affects fgf8, sox9, and bmp4 expression required for cranial neural crest morphogenesis and chondrogenesis in Xenopus laevis embryos.
Tussellino M, Ronca R, Carotenuto R, Pallotta MM, Furia M, Capriglione T.
Environ Mol Mutagen. October 1, 2016; 57 (8): 630-640.

In vivo confinement promotes collective migration of neural crest cells.
Szabó A, Melchionda M, Nastasi G, Woods ML, Campo S, Perris R, Mayor R.
J Cell Biol. June 6, 2016; 213 (5): 543-55.

Identifying domains of EFHC1 involved in ciliary localization, ciliogenesis, and the regulation of Wnt signaling.
Zhao Y, Shi J, Winey M, Klymkowsky MW.
Dev Biol. March 15, 2016; 411 (2): 257-265.

Hmga2 is required for neural crest cell specification in Xenopus laevis.
Macrì S, Simula L, Pellarin I, Pegoraro S, Onorati M, Sgarra R, Manfioletti G, Vignali R.
Dev Biol. March 1, 2016; 411 (1): 25-37.

Platelet derived growth factor B gene expression in the Xenopus laevis developing central nervous system.
Giannetti K, Corsinovi D, Rossino C, Appolloni I, Malatesta P, Ori M.
Int J Dev Biol. January 1, 2016; 60 (4-6): 175-9.

CDC174, a novel component of the exon junction complex whose mutation underlies a syndrome of hypotonia and psychomotor developmental delay.
Volodarsky M, Lichtig H, Leibson T, Sadaka Y, Kadir R, Perez Y, Liani-Leibson K, Gradstein L, Shaco-Levy R, Shorer Z, Frank D, Birk OS.
Hum Mol Genet. November 15, 2015; 24 (22): 6485-91.

NF2/Merlin is required for the axial pattern formation in the Xenopus laevis embryo.
Zhu X, Min Z, Tan R, Tao Q, Tao Q.
Mech Dev. November 1, 2015; 138 Pt 3 305-12.

Prdm12 specifies V1 interneurons through cross-repressive interactions with Dbx1 and Nkx6 genes in Xenopus.
Thélie A, Desiderio S, Hanotel J, Quigley I, Van Driessche B, Rodari A, Borromeo MD, Kricha S, Lahaye F, Croce J, Cerda-Moya G, Ordoño Fernandez J, Bolle B, Lewis KE, Sander M, Pierani A, Schubert M, Johnson JE, Kintner CR, Pieler T, Van Lint C, Henningfeld KA, Bellefroid EJ, Van Campenhout C.
Development. October 1, 2015; 142 (19): 3416-28.

The small leucine-rich repeat secreted protein Asporin induces eyes in Xenopus embryos through the IGF signalling pathway.
Luehders K, Sasai N, Davaapil H, Kurosawa-Yoshida M, Hiura H, Brah T, Ohnuma S.
Development. October 1, 2015; 142 (19): 3351-61.

A novel function for Egr4 in posterior hindbrain development.
Bae CJ, Jeong J, Saint-Jeannet JP.
Sci Rep. September 21, 2015; 5 7750.

A time space translation hypothesis for vertebrate axial patterning.
Durston AJ, Zhu K.
Semin Cell Dev Biol. June 1, 2015; 42 86-93.

Temporally coordinated signals progressively pattern the anteroposterior and dorsoventral body axes.
Tuazon FB, Mullins MC.
Semin Cell Dev Biol. June 1, 2015; 42 118-33.

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