Click here to close Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly. We suggest using a current version of Chrome, FireFox, or Safari.

???searchArticles.header???



Filter by Date: Year(4-digits)   to 

???application.search.numResults???


Alphabetic Search:

A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

???manualAddArticle.find??? ???manualAddArticle.link.add???


???pagination.result.count???

???pagination.result.page??? ???pagination.result.prev??? 1 2 3 4 ???pagination.result.next???

( ???images.icon???)
Search Results

Zygotic Wnt activity is required for Brachyury expression in the early Xenopus laevis embryo., Vonica A, Gumbiner BM., Dev Biol. October 1, 2002; 250 (1): 112-27.


Zic1 regulates the patterning of vertebral arches in cooperation with Gli3., Aruga J, Mizugishi K, Koseki H, Imai K, Balling R, Noda T, Mikoshiba K., Mech Dev. December 1, 1999; 89 (1-2): 141-50.


Zinc and copper modulate differentially the P2X4 receptor., Acuña-Castillo C, Morales B, Huidobro-Toro JP., J Neurochem. April 1, 2000; 74 (4): 1529-37.


Zygotic transcription is required to block a maternal program of apoptosis in Xenopus embryos., Sible JC, Anderson JA, Lewellyn AL, Maller JL., Dev Biol. September 15, 1997; 189 (2): 335-46.


Zebrafish nodal-related genes are implicated in axial patterning and establishing left-right asymmetry., Rebagliati MR, Toyama R, Fricke C, Haffter P, Dawid IB., Dev Biol. July 15, 1998; 199 (2): 261-72.


Zebrafish insulin-like growth factor-I receptor: molecular cloning and developmental expression., Ayaso E, Nolan CM, Byrnes L., Mol Cell Endocrinol. June 14, 2002; 191 (2): 137-48.


Zebrafish deadly seven functions in neurogenesis., Gray M, Moens CB, Amacher SL, Eisen JS, Beattie CE., Dev Biol. September 15, 2001; 237 (2): 306-23.


Zinc has opposite effects on NMDA and non-NMDA receptors expressed in Xenopus oocytes., Rassendren FA, Lory P, Pin JP, Nargeot J., Neuron. May 1, 1990; 4 (5): 733-40.


Zinc(II) ions selectively interact with DNA sequences present at the TFIIIA binding site of the Xenopus 5S-RNA gene., Martínez-Balbás MA, Jiménez-García E, Azorín F., Nucleic Acids Res. July 11, 1995; 23 (13): 2464-71.


Zinc is required for folding and binding of a single zinc finger to DNA., Lee MS, Gottesfeld JM, Wright PE., FEBS Lett. February 25, 1991; 279 (2): 289-94.


Zygotic Wnt/beta-catenin signaling preferentially regulates the expression of Myf5 gene in the mesoderm of Xenopus., Shi DL, Bourdelas A, Umbhauer M, Boucaut JC., Dev Biol. May 1, 2002; 245 (1): 124-35.


Zinc release from Xenopus transcription factor IIIA induced by chemical modifications., Shang Z, Liao YD, Wu FY, Wu CW., Biochemistry. December 12, 1989; 28 (25): 9790-5.


Zebrafish nma is involved in TGFbeta family signaling., Tsang M, Kim R, de Caestecker MP, Kudoh T, Roberts AB, Dawid IB., Genesis. October 1, 2000; 28 (2): 47-57.   


Zinc is a voltage-dependent blocker of native and heterologously expressed epithelial Na+ channels., Amuzescu B, Segal A, Flonta ML, Simaels J, Van Driessche W., Pflugers Arch. April 1, 2003; 446 (1): 69-77.


Zinc transfer from transcription factor IIIA fingers to thionein clusters., Zeng J, Vallee BL, Kägi JH., Proc Natl Acad Sci U S A. November 15, 1991; 88 (22): 9984-8.


Zinc modulation of AMPA receptors may be relevant to splice variants in carp retina., Shen Y, Yang XL., Neurosci Lett. January 15, 1999; 259 (3): 177-80.


Zebrafish genes for neuropeptide Y and peptide YY reveal origin by chromosome duplication from an ancestral gene linked to the homeobox cluster., Söderberg C, Wraith A, Ringvall M, Yan YL, Postlethwait JH, Brodin L, Larhammar D., J Neurochem. September 1, 2000; 75 (3): 908-18.


Zebrafish wnt8 and wnt8b share a common activity but are involved in distinct developmental pathways., Kelly GM, Greenstein P, Erezyilmaz DF, Moon RT., Development. June 1, 1995; 121 (6): 1787-99.   


Z-338 facilitates acetylcholine release from enteric neurons due to blockade of muscarinic autoreceptors in guinea pig stomach., Ogishima M, Kaibara M, Ueki S, Kurimoto T, Taniyama K., J Pharmacol Exp Ther. July 1, 2000; 294 (1): 33-7.


Zinc-finger motifs expressed in E. coli and folded in vitro direct specific binding to DNA., Nagai K, Nakaseko Y, Nasmyth K, Rhodes D., Nature. March 17, 1988; 332 (6161): 284-6.


Zinc binding by retroviral integrase., McEuen AR, Edwards B, Koepke KA, Ball AE, Jennings BA, Wolstenholme AJ, Danson MJ, Hough DW., Biochem Biophys Res Commun. December 15, 1992; 189 (2): 813-8.


Zinc uptake and distribution in Xenopus laevis oocytes and embryos., Falchuk KH, Montorzi M, Vallee BL., Biochemistry. December 19, 1995; 34 (50): 16524-31.


Zic3 is involved in the left-right specification of the Xenopus embryo., Kitaguchi T, Nagai T, Nakata K, Aruga J, Mikoshiba K., Development. November 1, 2000; 127 (22): 4787-95.   


Zinc is a mixed antagonist of homomeric rho 1 gamma-aminobutyric acid-activated channels., Chang Y, Amin J, Weiss DS., Mol Pharmacol. March 1, 1995; 47 (3): 595-602.


Zn2+ modulation of ATP-responses at recombinant P2X2 receptors and its dependence on extracellular pH., Wildman SS, King BF, Burnstock G., Br J Pharmacol. March 1, 1998; 123 (6): 1214-20.


Zygotic regulation of maternal cyclin A1 and B2 mRNAs., Audic Y, Anderson C, Bhatty R, Hartley RS., Mol Cell Biol. March 1, 2001; 21 (5): 1662-71.


ZNF76 and ZNF143 are two human homologs of the transcriptional activator Staf., Myslinski E, Krol A, Carbon P., J Biol Chem. August 21, 1998; 273 (34): 21998-2006.


Zebra fish myc family and max genes: differential expression and oncogenic activity throughout vertebrate evolution., Schreiber-Agus N, Horner J, Torres R, Chiu FC, DePinho RA., Mol Cell Biol. May 1, 1993; 13 (5): 2765-75.


Zebra finch estrogen receptor cDNA: cloning and mRNA expression., Jacobs EC, Arnold AP, Campagnoni AT., J Steroid Biochem Mol Biol. October 1, 1996; 59 (2): 135-45.


Zinc induces a bend within the transcription factor IIIA-binding region of the 5 S RNA gene., Nickol J, Rau DC., J Mol Biol. December 20, 1992; 228 (4): 1115-23.


Zebrafish Dkk1 functions in forebrain specification and axial mesendoderm formation., Hashimoto H, Itoh M, Yamanaka Y, Yamashita S, Shimizu T, Solnica-Krezel L, Hibi M, Hirano T., Dev Biol. January 1, 2000; 217 (1): 138-52.   


Zebrafish pou[c]: a divergent POU family gene ubiquitously expressed during embryogenesis., Johansen T, Moens U, Holm T, Fjose A, Krauss S., Nucleic Acids Res. February 11, 1993; 21 (3): 475-83.


Zinc potentiates agonist-induced currents at certain splice variants of the NMDA receptor., Hollmann M, Boulter J, Maron C, Beasley L, Sullivan J, Pecht G, Heinemann S., Neuron. May 1, 1993; 10 (5): 943-54.


Zebrafish: Drosophila with a spine (but can they fly?). Assessing the Zebrafish as a developmental model system sponsored by the National Institute of Child Health and Human Development, Eugene, OR, USA September 10-11, 1990., Schindler JM., New Biol. January 1, 1991; 3 (1): 47-9.


Zinc, iron, and copper contents of Xenopus laevis oocytes and embryos., Nomizu T, Falchuk KH, Vallee BL., Mol Reprod Dev. December 1, 1993; 36 (4): 419-23.


Zn2+ and H+ are coactivators of acid-sensing ion channels., Baron A, Schaefer L, Lingueglia E, Champigny G, Lazdunski M., J Biol Chem. September 21, 2001; 276 (38): 35361-7.


Zebrafish wnt11: pattern and regulation of the expression by the yolk cell and No tail activity., Makita R, Mizuno T, Koshida S, Kuroiwa A, Takeda H., Mech Dev. February 1, 1998; 71 (1-2): 165-76.


Zinc finger structure of a ribosomal gene-specific transcription factor., Hanas JS, Littell RM, Gaskins CJ, Zebrowski R., SAAS Bull Biochem Biotechnol. January 1, 1990; 3 85-90.


zeta PKC induces phosphorylation and inactivation of I kappa B-alpha in vitro., Diaz-Meco MT, Dominguez I, Sanz L, Dent P, Lozano J, Municio MM, Berra E, Hay RT, Sturgill TW, Moscat J., EMBO J. June 15, 1994; 13 (12): 2842-8.


Zebrafish cyclin E regulation during early embryogenesis., Yarden A, Geiger B., Dev Dyn. May 1, 1996; 206 (1): 1-11.


Zidovudine (AZT) induced alterations in mitochondrial biogenesis in rat striated muscles., Freyssenet D, DiCarlo M, Escobar P, Grey J, Schneider J, Hood DA., Can J Physiol Pharmacol. January 1, 1999; 77 (1): 29-35.


Zn(2+)-induction of metallothionein in myotomal cell nuclei during somitogenesis of Xenopus laevis., Sunderman FW, Grbac-Ivankovic S, Plowman MR, Davis M., Mol Reprod Dev. April 1, 1996; 43 (4): 444-51.


Zebrafish Rho kinase 2 acts downstream of Wnt11 to mediate cell polarity and effective convergence and extension movements., Marlow F, Topczewski J, Sepich D, Solnica-Krezel L., Curr Biol. June 4, 2002; 12 (11): 876-84.


Zebrafish tinman homolog demarcates the heart field and initiates myocardial differentiation., Chen JN, Fishman MC., Development. December 1, 1996; 122 (12): 3809-16.


Zebrafish Dkk1, induced by the pre-MBT Wnt signaling, is secreted from the prechordal plate and patterns the anterior neural plate., Shinya M, Eschbach C, Clark M, Lehrach H, Furutani-Seiki M., Mech Dev. November 1, 2000; 98 (1-2): 3-17.


Zinc physiology and biochemistry in oocytes and embryos., Falchuk KH, Montorzi M., Biometals. January 1, 2001; 14 (3-4): 385-95.


Zinc finger proteins in early Xenopus development., Hollemann T, Bellefroid E, Stick R, Pieler T., Int J Dev Biol. February 1, 1996; 40 (1): 291-5.   


Zygotic control of maternal cyclin A1 translation and mRNA stability., Audic Y, Garbrecht M, Fritz B, Sheets MD, Hartley RS., Dev Dyn. December 1, 2002; 225 (4): 511-21.


Zinc fingers: a novel protein fold for nucleic acid recognition., Klug A, Rhodes D., Cold Spring Harb Symp Quant Biol. January 1, 1987; 52 473-82.


Zebrafish melanopsin: isolation, tissue localisation and phylogenetic position., Bellingham J, Whitmore D, Philp AR, Wells DJ, Foster RG., Brain Res Mol Brain Res. November 15, 2002; 107 (2): 128-36.

???pagination.result.page??? ???pagination.result.prev??? 1 2 3 4 ???pagination.result.next???