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Summary Stage Literature (1662) Attributions Wiki
XB-STAGE-8

Papers associated with neurula stage

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Overexpression of the secreted factor Mig30 expressed in the Spemann organizer impairs morphogenetic movements during Xenopus gastrulation., Hayata T, Tanegashima K, Takahashi S, Sogame A, Asashima M., Mech Dev. March 1, 2002; 112 (1-2): 37-51.                


Analysis of DsRed Mutants. Space around the fluorophore accelerates fluorescence development., Terskikh AV, Fradkov AF, Zaraisky AG, Kajava AV, Angres B., J Biol Chem. March 8, 2002; 277 (10): 7633-6.  


Isolation and characterization of XKaiso, a transcriptional repressor that associates with the catenin Xp120(ctn) in Xenopus laevis., Kim SW, Fang X, Ji H, Paulson AF, Daniel JM, Ciesiolka M, van Roy F, McCrea PD., J Biol Chem. March 8, 2002; 277 (10): 8202-8.            


Dapper, a Dishevelled-associated antagonist of beta-catenin and JNK signaling, is required for notochord formation., Cheyette BN, Waxman JS, Miller JR, Takemaru K, Sheldahl LC, Khlebtsova N, Fox EP, Earnest T, Moon RT., Dev Cell. April 1, 2002; 2 (4): 449-61.  


The role of a Williams-Beuren syndrome-associated helix-loop-helix domain-containing transcription factor in activin/nodal signaling., Ring C, Ogata S, Meek L, Song J, Ohta T, Miyazono K, Cho KW., Genes Dev. April 1, 2002; 16 (7): 820-35.    


The homeoprotein Xiro1 is required for midbrain-hindbrain boundary formation., Glavic A, Gómez-Skarmeta JL, Mayor R., Development. April 1, 2002; 129 (7): 1609-21.                  


Xenopus marginal coil (Xmc), a novel FGF inducible cytosolic coiled-coil protein regulating gastrulation movements., Frazzetto G, Klingbeil P, Bouwmeester T., Mech Dev. April 1, 2002; 113 (1): 3-14.            


The IGF pathway regulates head formation by inhibiting Wnt signaling in Xenopus., Richard-Parpaillon L, Héligon C, Chesnel F, Boujard D, Philpott A., Dev Biol. April 15, 2002; 244 (2): 407-17.                    


Xenopus Cdc42 regulates convergent extension movements during gastrulation through Wnt/Ca2+ signaling pathway., Choi SC, Han JK., Dev Biol. April 15, 2002; 244 (2): 342-57.                  


Axial protocadherin is a mediator of prenotochord cell sorting in Xenopus., Kuroda H, Inui M, Sugimoto K, Hayata T, Asashima M., Dev Biol. April 15, 2002; 244 (2): 267-77.  


Involvement of NLK and Sox11 in neural induction in Xenopus development., Hyodo-Miura J, Urushiyama S, Nagai S, Nishita M, Ueno N, Shibuya H., Genes Cells. May 1, 2002; 7 (5): 487-96.                  


Sequencing and expression of the CD3 gamma/delta mRNA in Pleurodeles waltl (urodele amphibian)., Ropars A, Bautz AM, Dournon C., Immunogenetics. May 1, 2002; 54 (2): 130-8.


Distinct enhancers regulate skeletal and cardiac muscle-specific expression programs of the cardiac alpha-actin gene in Xenopus embryos., Latinkić BV, Cooper B, Towers N, Sparrow D, Kotecha S, Mohun TJ., Dev Biol. May 1, 2002; 245 (1): 57-70.          


The small GTPase Rap1 is an immediate downstream target for Hoxb4 transcriptional regulation., Morsi El-Kadi AS, in der Reiden P, Durston A, Morgan R., Mech Dev. May 1, 2002; 113 (2): 131-9.  


Molecular cloning and expression study of Xenopus latent TGF-beta binding protein-1 (LTBP-1)., Quarto N., Gene. May 15, 2002; 290 (1-2): 53-61.          


Cloning and expression of the surfeit locus member Surf-6 during embryogenesis in Xenopus laevis., Wolff CM, Nguyen VK, Remy P., DNA Seq. June 1, 2002; 13 (3): 149-52.


A developmental biological study of aldolase gene expression in Xenopus laevis., Shiokawa K, Kajita E, Hara H, Yatsuki H, Hori K., Cell Res. June 1, 2002; 12 (2): 85-96.


Identification and expression of Helios, a member of the Ikaros family, in the Mexican axolotl: implications for the embryonic origin of lymphocyte progenitors., Durand C, Kerfourn F, Charlemagne J, Fellah JS., Eur J Immunol. June 1, 2002; 32 (6): 1748-52.


Improved mRNA electroporation method for Xenopus neurula embryos., Sasagawa S, Takabatake T, Takabatake Y, Muramatsu T, Takeshima K., Genesis. June 1, 2002; 33 (2): 81-5.


Smad10 is required for formation of the frog nervous system., LeSueur JA, Fortuno ES, McKay RM, Graff JM., Dev Cell. June 1, 2002; 2 (6): 771-83.            


A study of mesoderm patterning through the analysis of the regulation of Xmyf-5 expression., Polli M, Amaya E., Development. June 1, 2002; 129 (12): 2917-27.        


Molecular cloning and developmental expression of the caveolin gene family in the amphibian Xenopus laevis., Razani B, Park DS, Miyanaga Y, Ghatpande A, Cohen J, Wang XB, Scherer PE, Evans T, Lisanti MP., Biochemistry. June 25, 2002; 41 (25): 7914-24.


The planar cell polarity gene strabismus regulates convergence and extension and neural fold closure in Xenopus., Goto T, Keller R., Dev Biol. July 1, 2002; 247 (1): 165-81.                        


cDNA cloning, sequence comparison, and developmental expression of Xenopus rac1., Lucas JM, Nikolic I, Hens MD., Mech Dev. July 1, 2002; 115 (1-2): 113-6.          


Molecular cloning and characterization of dullard: a novel gene required for neural development., Satow R, Chan TC, Asashima M., Biochem Biophys Res Commun. July 5, 2002; 295 (1): 85-91.                  


[Establishment of transgenic Xenopus laevis by intracytoplasmic sperm injection]., Jiang PZ, Feng XL, Huang H, Shen XM, Shi JL, Yao KT., Di Yi Jun Yi Da Xue Xue Bao. August 1, 2002; 22 (8): 673-7.


Expression of transcriptional repressor NC2alpha during Xenopus early embryogenesis., Kugawa F, Yoneyama M, Nagano M, Koyama Y, Aoki M, Shiokawa K., J Biochem Mol Biol Biophys. August 1, 2002; 6 (4): 273-7.


Conserved expression control and shared activity between cognate T-box genes Tbx2 and Tbx3 in connection with Sonic hedgehog signaling during Xenopus eye development., Takabatake Y, Takabatake T, Sasagawa S, Takeshima K., Dev Growth Differ. August 1, 2002; 44 (4): 257-71.              


Cloning and developmental expression of Baf57 in Xenopus laevis., Domingos PM, Obukhanych TV, Altmann CR, Hemmati-Brivanlou A., Mech Dev. August 1, 2002; 116 (1-2): 177-81.    


Isthmin is a novel secreted protein expressed as part of the Fgf-8 synexpression group in the Xenopus midbrain-hindbrain organizer., Pera EM, Kim JI, Martinez SL, Brechner M, Li SY, Wessely O, De Robertis EM., Mech Dev. August 1, 2002; 116 (1-2): 169-72.      


Sequence and expression of FoxB2 (XFD-5) and FoxI1c (XFD-10) in Xenopus embryogenesis., Pohl BS, Knöchel S, Dillinger K, Knöchel W., Mech Dev. September 1, 2002; 117 (1-2): 283-7.        


The roles of three signaling pathways in the formation and function of the Spemann Organizer., Xanthos JB, Kofron M, Tao Q, Tao Q, Schaible K, Wylie C, Heasman J., Development. September 1, 2002; 129 (17): 4027-43.                  


Cement gland-specific activation of the Xag1 promoter is regulated by co-operation of putative Ets and ATF/CREB transcription factors., Wardle FC, Wainstock DH, Sive HL., Development. October 1, 2002; 129 (19): 4387-97.  


Hoxc-8 expression shows left-right asymmetry in the posterior lateral plate mesoderm., Thickett C, Morgan R., Gene Expr Patterns. November 1, 2002; 2 (1-2): 5-6.    


XHRT-1, a hairy and Enhancer of split related gene with expression in floor plate and hypochord during early Xenopus embryogenesis., Pichon B, Taelman V, Kricha S, Christophe D, Bellefroid EJ., Dev Genes Evol. November 1, 2002; 212 (10): 491-5.


The Xenopus receptor tyrosine kinase Xror2 modulates morphogenetic movements of the axial mesoderm and neuroectoderm via Wnt signaling., Hikasa H, Shibata M, Hiratani I, Taira M., Development. November 1, 2002; 129 (22): 5227-39.                        


Xiro homeoproteins coordinate cell cycle exit and primary neuron formation by upregulating neuronal-fate repressors and downregulating the cell-cycle inhibitor XGadd45-gamma., de la Calle-Mustienes E, Glavic A, Modolell J, Gómez-Skarmeta JL., Mech Dev. November 1, 2002; 119 (1): 69-80.              


Role of 14-3-3 proteins in early Xenopus development., Wu C, Muslin AJ., Mech Dev. November 1, 2002; 119 (1): 45-54.            


XETOR regulates the size of the proneural domain during primary neurogenesis in Xenopus laevis., Cao Y, Zhao H, Grunz H., Mech Dev. November 1, 2002; 119 (1): 35-44.                      


The E3 ubiquitin ligase GREUL1 anteriorizes ectoderm during Xenopus development., Borchers AG, Hufton AL, Eldridge AG, Jackson PK, Harland RM, Baker JC., Dev Biol. November 15, 2002; 251 (2): 395-408.              


Molecular cloning and developmental expression of Par-1/MARK homologues XPar-1A and XPar-1B from Xenopus laevis., Ossipova O, He X, Green J., Mech Dev. December 1, 2002; 119 Suppl 1 S143-8.    


Cloning and expression of a novel armadillo motif containing gene in Xenopus., Chang JY, Han JK., Mech Dev. December 1, 2002; 119 Suppl 1 S83-5.            


Gene expression pattern analysis of the tight junction protein, Claudin, in the early morphogenesis of Xenopus embryos., Fujita M, Itoh M, Shibata M, Taira S, Taira M., Mech Dev. December 1, 2002; 119 Suppl 1 S27-30.      


The circadian gene Clock is required for the correct early expression of the head specific gene Otx2., Morgan R., Int J Dev Biol. December 1, 2002; 46 (8): 999-1004.          


Xolloid-related: a novel BMP1/Tolloid-related metalloprotease is expressed during early Xenopus development., Dale L, Evans W, Goodman SA., Mech Dev. December 1, 2002; 119 (2): 177-90.      


Xenopus bagpipe-related gene, koza, may play a role in regulation of cell proliferation., Newman CS, Krieg PA., Dev Dyn. December 1, 2002; 225 (4): 571-80.    


Techniques and probes for the study of Xenopus tropicalis development., Khokha MK, Chung C, Bustamante EL, Gaw LW, Trott KA, Yeh J, Lim N, Lin JC, Taverner N, Amaya E, Papalopulu N, Smith JC, Zorn AM, Harland RM, Grammer TC., Dev Dyn. December 1, 2002; 225 (4): 499-510.          


Neural tube closure requires Dishevelled-dependent convergent extension of the midline., Wallingford JB, Harland RM., Development. December 1, 2002; 129 (24): 5815-25.        


Adult and embryonic blood and endothelium derive from distinct precursor populations which are differentially programmed by BMP in Xenopus., Walmsley M, Ciau-Uitz A, Patient R., Development. December 1, 2002; 129 (24): 5683-95.          


Kremen proteins interact with Dickkopf1 to regulate anteroposterior CNS patterning., Davidson G, Mao B, del Barco Barrantes I, Niehrs C., Development. December 1, 2002; 129 (24): 5587-96.        

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