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Summary Expression Phenotypes Gene Literature (531) GO Terms (11) Nucleotides (79) Proteins (47) Interactants (1198) Wiki
XB--487168

Papers associated with nodal1



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Notch signaling can regulate endoderm formation in zebrafish., Kikuchi Y, Verkade H, Reiter JF, Kim CH, Chitnis AB, Kuroiwa A, Stainier DY., Dev Dyn. April 1, 2004; 229 (4): 756-62.


Differential modulation of NR1-NR2A and NR1-NR2B subtypes of NMDA receptor by PDZ domain-containing proteins., Iwamoto T, Yamada Y, Hori K, Watanabe Y, Sobue K, Inui M., J Neurochem. April 1, 2004; 89 (1): 100-8.


The Cerberus/Dan-family protein Charon is a negative regulator of Nodal signaling during left-right patterning in zebrafish., Hashimoto H, Rebagliati M, Ahmad N, Muraoka O, Kurokawa T, Hibi M, Suzuki T., Development. April 1, 2004; 131 (8): 1741-53.


Lefty blocks a subset of TGFbeta signals by antagonizing EGF-CFC coreceptors., Cheng SK, Olale F, Brivanlou AH, Schier AF., PLoS Biol. February 1, 2004; 2 (2): E30.                  


Regulation of vertebrate eye development by Rx genes., Bailey TJ, El-Hodiri H, Zhang L, Shah R, Mathers PH, Jamrich M., Int J Dev Biol. January 1, 2004; 48 (8-9): 761-70.    


Dorsal-ventral patterning and neural induction in Xenopus embryos., De Robertis EM, Kuroda H., Annu Rev Cell Dev Biol. January 1, 2004; 20 285-308.


Xenopus tropicalis nodal-related gene 3 regulates BMP signaling: an essential role for the pro-region., Haramoto Y, Tanegashima K, Onuma Y, Takahashi S, Sekizaki H, Asashima M., Dev Biol. January 1, 2004; 265 (1): 155-68.              


Nodal signaling and vertebrate germ layer formation., Weng W, Stemple DL., Birth Defects Res C Embryo Today. November 1, 2003; 69 (4): 325-32.


Tomoregulin-1 (TMEFF1) inhibits nodal signaling through direct binding to the nodal coreceptor Cripto., Harms PW, Chang C., Genes Dev. November 1, 2003; 17 (21): 2624-9.


Nodal-dependent Cripto signaling promotes cardiomyogenesis and redirects the neural fate of embryonic stem cells., Parisi S, D'Andrea D, Lago CT, Adamson ED, Persico MG, Minchiotti G., J Cell Biol. October 27, 2003; 163 (2): 303-14.                    


Activin/Nodal signals mediate the ventral expression of myf-5 in Xenopus gastrula embryos., Chen Y, Lin GF, Hu R, Chen Y, Ding X., Biochem Biophys Res Commun. October 10, 2003; 310 (1): 121-7.


Endogenous Cerberus activity is required for anterior head specification in Xenopus., Silva AC, Filipe M, Kuerner KM, Steinbeisser H, Belo JA., Development. October 1, 2003; 130 (20): 4943-53.              


Fusicoccin signaling reveals 14-3-3 protein function as a novel step in left-right patterning during amphibian embryogenesis., Bunney TD, De Boer AH, Levin M., Development. October 1, 2003; 130 (20): 4847-58.            


The Mix family homeodomain gene bonnie and clyde functions with other components of the Nodal signaling pathway to regulate neural patterning in zebrafish., Trinh LA, Meyer D, Stainier DY., Development. October 1, 2003; 130 (20): 4989-98.


Fibroblast growth factor receptor-1 is essential for in vitro cardiomyocyte development., Dell'Era P, Ronca R, Coco L, Nicoli S, Metra M, Presta M., Circ Res. September 5, 2003; 93 (5): 414-20.


Left-right asymmetry: nodal points., Mercola M., J Cell Sci. August 15, 2003; 116 (Pt 16): 3251-7.      


Clozapine inhibits isolated N-methyl-D-aspartate receptors expressed in xenopus oocytes in a subunit specific manner., Levine JB, Martin G, Wilson A, Treistman SN., Neurosci Lett. August 7, 2003; 346 (3): 125-8.


Early head specification in Xenopus laevis., Lake BB, Kao KR., ScientificWorldJournal. August 2, 2003; 3 655-76.    


Coordination of BMP-3b and cerberus is required for head formation of Xenopus embryos., Hino J, Nishimatsu S, Nagai T, Matsuo H, Kangawa K, Nohno T., Dev Biol. August 1, 2003; 260 (1): 138-57.                            


Local tissue interactions across the dorsal midline of the forebrain establish CNS laterality., Concha ML, Russell C, Regan JC, Tawk M, Sidi S, Gilmour DT, Kapsimali M, Sumoy L, Goldstone K, Amaya E, Kimelman D, Nicolson T, Gründer S, Gomperts M, Clarke JD, Wilson SW., Neuron. July 31, 2003; 39 (3): 423-38.


Molecular determinants of proton-sensitive N-methyl-D-aspartate receptor gating., Low CM, Lyuboslavsky P, French A, Le P, Wyatte K, Thiel WH, Marchan EM, Igarashi K, Kashiwagi K, Gernert K, Williams K, Traynelis SF, Zheng F., Mol Pharmacol. June 1, 2003; 63 (6): 1212-22.


Two variants of zebrafish p100 are expressed during embryogenesis and regulated by Nodal signaling., Zhao CT, Shi KH, Su Y, Liang LY, Yan Y, Postlethwait J, Meng AM., FEBS Lett. May 22, 2003; 543 (1-3): 190-5.


Molecular link in the sequential induction of the Spemann organizer: direct activation of the cerberus gene by Xlim-1, Xotx2, Mix.1, and Siamois, immediately downstream from Nodal and Wnt signaling., Yamamoto S, Hikasa H, Ono H, Taira M., Dev Biol. May 1, 2003; 257 (1): 190-204.


A novel role for a nodal-related protein; Xnr3 regulates convergent extension movements via the FGF receptor., Yokota C, Kofron M, Zuck M, Houston DW, Isaacs H, Asashima M, Wylie CC, Heasman J., Development. May 1, 2003; 130 (10): 2199-212.    


Role of glypican 4 in the regulation of convergent extension movements during gastrulation in Xenopus laevis., Ohkawara B, Yamamoto TS, Tada M, Ueno N., Development. May 1, 2003; 130 (10): 2129-38.                


Pharmacology of delta2 glutamate receptors: effects of pentamidine and protons., Williams K, Dattilo M, Sabado TN, Kashiwagi K, Igarashi K., J Pharmacol Exp Ther. May 1, 2003; 305 (2): 740-8.


The left-right determinant Inversin is a component of node monocilia and other 9+0 cilia., Watanabe D, Saijoh Y, Nonaka S, Sasaki G, Ikawa Y, Yokoyama T, Hamada H., Development. May 1, 2003; 130 (9): 1725-34.


Regulation of nodal and BMP signaling by tomoregulin-1 (X7365) through novel mechanisms., Chang C, Eggen BJ, Weinstein DC, Brivanlou AH., Dev Biol. March 1, 2003; 255 (1): 1-11.                    


Hedgehog signalling maintains the optic stalk-retinal interface through the regulation of Vax gene activity., Take-uchi M, Clarke JD, Wilson SW., Development. March 1, 2003; 130 (5): 955-68.


EGF-CFC proteins are essential coreceptors for the TGF-beta signals Vg1 and GDF1., Cheng SK, Olale F, Bennett JT, Brivanlou AH, Schier AF., Genes Dev. January 1, 2003; 17 (1): 31-6.


Nodal signaling in Xenopus gastrulae is cell-autonomous and patterned by beta-catenin., Hashimoto-Partyka MK, Yuge M, Cho KW., Dev Biol. January 1, 2003; 253 (1): 125-38.                    


PKCgamma regulates syndecan-2 inside-out signaling during xenopus left-right development., Kramer KL, Barnette JE, Yost HJ., Cell. December 27, 2002; 111 (7): 981-90.                


Lefty-dependent inhibition of Nodal- and Wnt-responsive organizer gene expression is essential for normal gastrulation., Branford WW, Yost HJ., Curr Biol. December 23, 2002; 12 (24): 2136-41.              


Staggering of subunits in NMDAR channels., Sobolevsky AI, Rooney L, Wollmuth LP., Biophys J. December 1, 2002; 83 (6): 3304-14.


Morphogen gradients, positional information, and Xenopus: interplay of theory and experiment., Green J., Dev Dyn. December 1, 2002; 225 (4): 392-408.


Mezzo, a paired-like homeobox protein is an immediate target of Nodal signalling and regulates endoderm specification in zebrafish., Poulain M, Lepage T., Development. November 1, 2002; 129 (21): 4901-14.


The hypoblast of the chick embryo positions the primitive streak by antagonizing nodal signaling., Bertocchini F, Stern CD., Dev Cell. November 1, 2002; 3 (5): 735-44.


Asymmetries in H+/K+-ATPase and cell membrane potentials comprise a very early step in left-right patterning., Levin M, Thorlin T, Robinson KR, Nogi T, Mercola M., Cell. October 4, 2002; 111 (1): 77-89.              


The nodal target gene Xmenf is a component of an FGF-independent pathway of ventral mesoderm induction in Xenopus., Kumano G, Smith WC., Mech Dev. October 1, 2002; 118 (1-2): 45-56.    


Molecular regulation of vertebrate early endoderm development., Shivdasani RA., Dev Biol. September 15, 2002; 249 (2): 191-203.      


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.                  


Repression of organizer genes in dorsal and ventral Xenopus cells mediated by maternal XTcf3., Houston DW, Kofron M, Resnik E, Langland R, Destree O, Wylie C, Heasman J., Development. September 1, 2002; 129 (17): 4015-25.          


A component of the ARC/Mediator complex required for TGF beta/Nodal signalling., Kato Y, Habas R, Katsuyama Y, Näär AM, He X., Nature. August 8, 2002; 418 (6898): 641-6.


The latent-TGFbeta-binding-protein-1 (LTBP-1) is expressed in the organizer and regulates nodal and activin signaling., Altmann CR, Chang C, Muñoz-Sanjuán I, Bell E, Heke M, Rifkin DB, Brivanlou AH., Dev Biol. August 1, 2002; 248 (1): 118-27.                  


Conserved function for embryonic nodal cilia., Essner JJ, Vogan KJ, Wagner MK, Tabin CJ, Yost HJ, Brueckner M., Nature. July 4, 2002; 418 (6893): 37-8.


Effects of heterodimerization and proteolytic processing on Derrière and Nodal activity: implications for mesoderm induction in Xenopus., Eimon PM, Harland RM., Development. July 1, 2002; 129 (13): 3089-103.          


PSD-95 eliminates Src-induced potentiation of NR1/NR2A-subtype NMDA receptor channels and reduces high-affinity zinc inhibition., Yamada Y, Iwamoto T, Watanabe Y, Sobue K, Inui M., J Neurochem. May 1, 2002; 81 (4): 758-64.


Inhibition of Nodal signalling by Lefty mediated through interaction with common receptors and efficient diffusion., Sakuma R, Ohnishi Yi Y, Meno C, Fujii H, Juan H, Takeuchi J, Ogura T, Li E, Miyazono K, Hamada H., Genes Cells. April 1, 2002; 7 (4): 401-12.


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.    


Characterization and comparison of the NR3A subunit of the NMDA receptor in recombinant systems and primary cortical neurons., Sasaki YF, Rothe T, Premkumar LS, Das S, Cui J, Talantova MV, Wong HK, Gong X, Chan SF, Zhang D, Nakanishi N, Sucher NJ, Lipton SA., J Neurophysiol. April 1, 2002; 87 (4): 2052-63.

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