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Xebf3 is a regulator of neuronal differentiation during primary neurogenesis in Xenopus. , Pozzoli O, Bosetti A, Croci L, Consalez GG, Vetter ML ., Dev Biol. May 15, 2001; 233 (2): 495-512.
mGluR1-mediated potentiation of NMDA receptors involves a rise in intracellular calcium and activation of protein kinase C. , Skeberdis VA, Lan J, Opitz T, Zheng X, Bennett MV, Zukin RS., Neuropharmacology. June 1, 2001; 40 (7): 856-65.
Neural induction in the absence of mesoderm: beta-catenin-dependent expression of secreted BMP antagonists at the blastula stage in Xenopus. , Wessely O , Agius E , Oelgeschläger M , Pera EM , De Robertis EM ., Dev Biol. June 1, 2001; 234 (1): 161-73.
Axis induction by wnt signaling: Target promoter responsiveness regulates competence. , Darken RS , Wilson PA ., Dev Biol. June 1, 2001; 234 (1): 42-54.
Overexpression of camello, a member of a novel protein family, reduces blastomere adhesion and inhibits gastrulation in Xenopus laevis. , Popsueva AE, Luchinskaya NN, Ludwig AV, Zinovjeva OY, Poteryaev DA, Feigelman MM, Ponomarev MB, Berekelya L, Belyavsky AV., Dev Biol. June 15, 2001; 234 (2): 483-96.
Activation of cardiac gene expression by myocardin, a transcriptional cofactor for serum response factor. , Wang D, Chang PS, Wang Z, Sutherland L, Richardson JA, Small E, Krieg PA , Olson EN., Cell. June 29, 2001; 105 (7): 851-62.
MAP2 phosphorylation and visual plasticity in Xenopus. , Guo Y, Sánchez C, Udin SB ., Dev Biol. June 29, 2001; 905 (1-2): 134-41.
GFP associates with microfilaments in fixed cells. , Schmitz HD, Bereiter-Hahn J., Histochem Cell Biol. July 1, 2001; 116 (1): 89-94.
Regions in the carboxy terminus of alpha-bENaC involved in gating and functional effects of actin. , Copeland SJ, Berdiev BK, Ji HL, Lockhart J, Parker S, Fuller CM, Benos DJ., Am J Physiol Cell Physiol. July 1, 2001; 281 (1): C231-40.
Dynamic reorientation of cultured cells and stress fibers under mechanical stress from periodic stretching. , Hayakawa K, Sato N, Obinata T., Exp Cell Res. August 1, 2001; 268 (1): 104-14.
Endoderm specification and differentiation in Xenopus embryos. , Horb ME , Slack JM ., Dev Biol. August 15, 2001; 236 (2): 330-43.
Contraction and polymerization cooperate to assemble and close actomyosin rings around Xenopus oocyte wounds. , Mandato CA , Bement WM ., J Cell Biol. August 20, 2001; 154 (4): 785-97.
The core of the motor domain determines the direction of myosin movement. , Homma K, Yoshimura M, Saito J, Ikebe R, Ikebe M., Nature. August 23, 2001; 412 (6849): 831-4.
EphA4 activity causes cell shape change and a loss of cell polarity in Xenopus laevis embryos. , Winning RS, Wyman TL, Walker GK., Differentiation. September 1, 2001; 68 (2-3): 126-32.
Motor function and regulation of myosin X. , Homma K, Saito J, Ikebe R, Ikebe M., J Biol Chem. September 7, 2001; 276 (36): 34348-54.
A chemical inhibitor of N- WASP reveals a new mechanism for targeting protein interactions. , Peterson JR, Lokey RS, Mitchison TJ , Kirschner MW ., Proc Natl Acad Sci U S A. September 11, 2001; 98 (19): 10624-9.
The FGFR pathway is required for the trunk-inducing functions of Spemann's organizer. , Mitchell TS, Sheets MD ., Dev Biol. September 15, 2001; 237 (2): 295-305.
Self-organization of a propulsive actin network as an evolutionary process. , Maly IV, Borisy GG., Proc Natl Acad Sci U S A. September 25, 2001; 98 (20): 11324-9.
CR16 forms a complex with N- WASP in brain and is a novel member of a conserved proline-rich actin-binding protein family. , Ho HY, Rohatgi R, Ma L, Kirschner MW ., Proc Natl Acad Sci U S A. September 25, 2001; 98 (20): 11306-11.
Occurrence of neurotrophin receptors and transmitters in the developing Xenopus gut. , Holmberg A, Hägg U, Fritsche R, Holmgren S., Cell Tissue Res. October 1, 2001; 306 (1): 35-47.
Siamois functions in the early blastula to induce Spemann's organiser. , Kodjabachian L , Lemaire P ., Mech Dev. October 1, 2001; 108 (1-2): 71-9.
Cingulin interacts with F-actin in vitro. , D'Atri F, Citi S ., FEBS Lett. October 19, 2001; 507 (1): 21-4.
The Wnt/beta-catenin pathway posteriorizes neural tissue in Xenopus by an indirect mechanism requiring FGF signalling. , Domingos PM , Itasaki N, Jones CM , Mercurio S, Sargent MG, Smith JC , Krumlauf R ., Dev Biol. November 1, 2001; 239 (1): 148-60.
Repression of XMyoD expression and myogenesis by Xhairy-1 in Xenopus early embryo. , Umbhauer M , Boucaut JC , Shi DL ., Mech Dev. November 1, 2001; 109 (1): 61-8.
Contractile ring formation in Xenopus egg and fission yeast. , Noguchi T, Arai R, Motegi F, Nakano K, Mabuchi I., Cell Struct Funct. December 1, 2001; 26 (6): 545-54.
Sodium absorption, volume control and potassium channels: in tribute to a great biologist. , Schultz SG, Dubinsky WP., J Membr Biol. December 1, 2001; 184 (3): 255-61.
MAP kinase converts MyoD into an instructive muscle differentiation factor in Xenopus. , Zetser A, Frank D , Bengal E ., Dev Biol. December 1, 2001; 240 (1): 168-81.
Cloning and characterization of the T-box gene Tbx6 in Xenopus laevis. , Uchiyama H, Kobayashi T, Yamashita A, Ohno S, Yabe S., Dev Growth Differ. December 1, 2001; 43 (6): 657-69.
A novel p21-activated kinase binds the actin and microtubule networks and induces microtubule stabilization. , Cau J, Faure S , Comps M, Delsert C, Morin N ., J Cell Biol. December 10, 2001; 155 (6): 1029-42.
Dorsoventral differences in cell-cell interactions modulate the motile behaviour of cells from the Xenopus gastrula. , Reintsch WE, Hausen P ., Dev Biol. December 15, 2001; 240 (2): 387-403.
The secreted glycoprotein Noelin-1 promotes neurogenesis in Xenopus. , Moreno TA, Bronner-Fraser M ., Dev Biol. December 15, 2001; 240 (2): 340-60.
The effect of IQGAP1 on Xenopus embryonic ectoderm requires Cdc42. , Sokol SY , Li Z, Sacks DB., J Biol Chem. December 21, 2001; 276 (51): 48425-30.
Insulin stimulates actin comet tails on intracellular GLUT4-containing compartments in differentiated 3T3L1 adipocytes. , Kanzaki M, Watson RT, Khan AH, Pessin JE., J Biol Chem. December 28, 2001; 276 (52): 49331-6.
Structure and function of the egg cortex from oogenesis through fertilization. , Sardet C, Prodon F, Dumollard R, Chang P, Chênevert J., Dev Biol. January 1, 2002; 241 (1): 1-23.
The motor domain determines the large step of myosin-V. , Tanaka H , Homma K, Iwane AH, Katayama E, Ikebe R, Saito J, Yanagida T, Ikebe M., Nature. January 10, 2002; 415 (6868): 192-5.
Class VI myosin moves processively along actin filaments backward with large steps. , Nishikawa S, Homma K, Komori Y, Iwaki M, Wazawa T, Hikikoshi Iwane A, Saito J, Ikebe R, Katayama E, Yanagida T, Ikebe M., Biochem Biophys Res Commun. January 11, 2002; 290 (1): 311-7.
Two myogenin-related genes are differentially expressed in Xenopus laevis myogenesis and differ in their ability to transactivate muscle structural genes. , Charbonnier F, Gaspera BD, Armand AS, Van der Laarse WJ, Launay T, Becker C, Gallien CL, Chanoine C ., J Biol Chem. January 11, 2002; 277 (2): 1139-47.
Possible role of the 38 kDa protein, lacking in the gastrula-arrested Xenopus mutant, in gastrulation. , Tanaka TS, Ikenishi K ., Dev Growth Differ. February 1, 2002; 44 (1): 23-33.
Modulation of Kv1.5 currents by protein kinase A, tyrosine kinase, and protein tyrosine phosphatase requires an intact cytoskeleton. , Mason HS, Latten MJ, Godoy LD, Horowitz B, Kenyon JL., Mol Pharmacol. February 1, 2002; 61 (2): 285-93.
Targeted gene expression in transgenic Xenopus using the binary Gal4-UAS system. , Hartley KO, Nutt SL, Amaya E ., Proc Natl Acad Sci U S A. February 5, 2002; 99 (3): 1377-82.
Single-molecule speckle analysis of actin filament turnover in lamellipodia. , Watanabe N, Mitchison TJ ., Science. February 8, 2002; 295 (5557): 1083-6.
Mesendoderm extension and mantle closure in Xenopus laevis gastrulation: combined roles for integrin alpha(5)beta(1), fibronectin, and tissue geometry. , Davidson LA , Hoffstrom BG, Keller R , DeSimone DW ., Dev Biol. February 15, 2002; 242 (2): 109-29.
Extracellular export of sphingosine kinase-1 enzyme. Sphingosine 1-phosphate generation and the induction of angiogenic vascular maturation. , Ancellin N , Colmont C, Su J, Li Q , Mittereder N, Chae SS, Stefansson S, Liau G, Hla T., J Biol Chem. February 22, 2002; 277 (8): 6667-75.
Regulation of rho GTPases by crosstalk and neuronal activity in vivo. , Li Z, Aizenman CD , Cline HT ., Neuron. February 28, 2002; 33 (5): 741-50.
Molecular characterization of regenerated cardiomyocytes derived from adult mesenchymal stem cells. , Fukuda K., Congenit Anom (Kyoto). March 1, 2002; 42 (1): 1-9.
EphA4 catalytic activity causes inhibition of RhoA GTPase in Xenopus laevis embryos. , Winning RS, Ward EK, Scales JB , Walker GK., Differentiation. March 1, 2002; 70 (1): 46-55.
Repairing a torn cell surface: make way, lysosomes to the rescue. , McNeil PL., J Cell Sci. March 1, 2002; 115 (Pt 5): 873-9.
DNA methylation at promoter regions regulates the timing of gene activation in Xenopus laevis embryos. , Stancheva I , El-Maarri O, Walter J, Niveleau A, Meehan RR ., Dev Biol. March 1, 2002; 243 (1): 155-65.
Interactions and regulation of molecular motors in Xenopus melanophores. , Gross SP, Tuma MC, Deacon SW, Serpinskaya AS, Reilein AR, Gelfand VI., J Cell Biol. March 4, 2002; 156 (5): 855-65.
Membrane trafficking in cytokinesis. , Xu H, Boulianne GL, Trimble WS., Semin Cell Dev Biol. April 1, 2002; 13 (2): 77-82.