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The expression of phosphorylated and non-phosphorylated forms of MAP5 in the amphibian CNS. , Viereck C., Dev Biol. February 5, 1990; 508 (2): 257-64.
Nerve branching is induced and oriented by a small applied electric field. , McCaig CD., J Cell Sci. April 1, 1990; 95 ( Pt 4) 605-15.
Centrosome duplication continues in cycloheximide-treated Xenopus blastulae in the absence of a detectable cell cycle. , Gard DL ., J Cell Biol. June 1, 1990; 110 (6): 2033-42.
Spermiogenesis in Xenopus laevis: from late spermatids to spermatozoa. , Bernardini G., Mol Reprod Dev. August 1, 1990; 26 (4): 347-55.
Real-time visualization of cell cycle-dependent changes in microtubule dynamics in cytoplasmic extracts. , Belmont LD., Cell. August 10, 1990; 62 (3): 579-89.
Glycinergic contacts in the outer plexiform layer of the Xenopus laevis retina characterized by antibodies to glycine, GABA and glycine receptors. , Smiley JF., J Comp Neurol. September 15, 1990; 299 (3): 375-88.
In vivo activation of a microtubule-associated protein kinase during meiotic maturation of the Xenopus oocyte. , Haccard O ., Eur J Biochem. September 24, 1990; 192 (3): 633-42.
Insulin activates a 70-kDa S6 kinase through serine/threonine-specific phosphorylation of the enzyme polypeptide. , Price DJ., Proc Natl Acad Sci U S A. October 1, 1990; 87 (20): 7944-8.
A centrosomal antigen localized on intermediate filaments and mitotic spindle poles. , Buendia B., J Cell Sci. October 1, 1990; 97 ( Pt 2) 259-71.
pp54 microtubule-associated protein 2 kinase. A novel serine/threonine protein kinase regulated by phosphorylation and stimulated by poly-L-lysine. , Kyriakis JM., J Biol Chem. October 5, 1990; 265 (28): 17355-63.
Protein kinase cascades in meiotic and mitotic cell cycle control. , Pelech SL., Biochem Cell Biol. December 1, 1990; 68 (12): 1297-330.
Autoradiography of progesterone and model compound entry and distribution in Xenopus laevis oocytes. , Bronson DD., Prog Histochem Cytochem. January 1, 1991; 22 (4): 1-59.
Regulation of protein kinases associated with cyclin A and cyclin B and their effect on microtubule dynamics and nucleation in Xenopus egg extracts. , Buendia B., Cold Spring Harb Symp Quant Biol. January 1, 1991; 56 523-32.
Generation of body plan phenotypes in early embryogenesis. , Kao K ., Methods Cell Biol. January 1, 1991; 36 271-84.
In vitro effects on microtubule dynamics of purified Xenopus M phase-activated MAP kinase. , Gotoh Y., Nature. January 17, 1991; 349 (6306): 251-4.
Intracellular localization of MAP2-related protein (O-map) in prophase I and metaphase II oocytes of Xenopus. , Fellous A., Mech Dev. February 1, 1991; 33 (2): 139-46.
Organization, nucleation, and acetylation of microtubules in Xenopus laevis oocytes: a study by confocal immunofluorescence microscopy. , Gard DL ., Dev Biol. February 1, 1991; 143 (2): 346-62.
Independent roles of centrosomes and DNA in organizing the Drosophila cytoskeleton. , Yasuda GK., Development. February 1, 1991; 111 (2): 379-91.
Severing of stable microtubules by a mitotically activated protein in Xenopus egg extracts. , Vale RD., Cell. February 22, 1991; 64 (4): 827-39.
Poleward microtubule flux mitotic spindles assembled in vitro. , Sawin KE., J Cell Biol. March 1, 1991; 112 (5): 941-54.
Mitotic spindle assembly by two different pathways in vitro. , Sawin KE., J Cell Biol. March 1, 1991; 112 (5): 925-40.
Taxol-induced microtubule asters in mitotic extracts of Xenopus eggs: requirement for phosphorylated factors and cytoplasmic dynein. , Verde F., J Cell Biol. March 1, 1991; 112 (6): 1177-87.
Cell cycle control of microtubule-based membrane transport and tubule formation in vitro. , Allan VJ., J Cell Biol. April 1, 1991; 113 (2): 347-59.
Cell cycle tyrosine phosphorylation of p34cdc2 and a microtubule-associated protein kinase homolog in Xenopus oocytes and eggs. , Ferrell JE ., Mol Cell Biol. April 1, 1991; 11 (4): 1965-71.
Patterns of microtubule polymerization relating to cortical rotation in Xenopus laevis eggs. , Houliston E ., Development. May 1, 1991; 112 (1): 107-17.
Gamma-tubulin is a highly conserved component of the centrosome. , Stearns T ., Cell. May 31, 1991; 65 (5): 825-36.
The intercentriolar linkage is critical for the ability of heterologous centrosomes to induce parthenogenesis in Xenopus. , Tournier F., J Cell Biol. June 1, 1991; 113 (6): 1361-9.
Acoustic microscopy of cultured cells. Distribution of forces and cytoskeletal elements. , Lüers H., Cell Biophys. June 1, 1991; 18 (3): 279-93.
Phosphorylation of Xenopus cyclins B1 and B2 is not required for cell cycle transitions. , Izumi T., Mol Cell Biol. August 1, 1991; 11 (8): 3860-7.
Evidence for the involvement of microtubules, ER, and kinesin in the cortical rotation of fertilized frog eggs. , Houliston E ., J Cell Biol. September 1, 1991; 114 (5): 1017-28.
Xenopus M phase MAP kinase: isolation of its cDNA and activation by MPF. , Gotoh Y., EMBO J. September 1, 1991; 10 (9): 2661-8.
Microtubule destabilization by cdc2/H1 histone kinase: phosphorylation of a "pro-rich region" in the microtubule-binding domain of MAP-4. , Aizawa H., Biochem Biophys Res Commun. September 30, 1991; 179 (3): 1620-6.
Microtubule behavior in the growth cones of living neurons during axon elongation. , Tanaka EM ., J Cell Biol. October 1, 1991; 115 (2): 345-63.
Microtubule polymer assembly and transport during axonal elongation. , Reinsch SS ., J Cell Biol. October 1, 1991; 115 (2): 365-79.
Centrosomes competent for parthenogenesis in Xenopus eggs support procentriole budding in cell-free extracts. , Tournier F., Proc Natl Acad Sci U S A. November 15, 1991; 88 (22): 9929-33.
Cytochemical evidence of an organized microtubular cytoskeleton in Xenopus laevis oocytes: involvement in the segregation of mitochondrial populations. , Tourte M., Mol Reprod Dev. December 1, 1991; 30 (4): 353-9.
cdc2 kinase-induced destabilization of MAP2-coated microtubules in Xenopus egg extracts. , Faruki S., J Cell Sci. January 1, 1992; 101 ( Pt 1) 69-78.
Evidence for kinesin-related proteins in the mitotic apparatus using peptide antibodies. , Sawin KE., J Cell Sci. February 1, 1992; 101 ( Pt 2) 303-13.
Erks: their fifteen minutes has arrived. , Crews CM., Cell Growth Differ. February 1, 1992; 3 (2): 135-42.
Isolation of a sea urchin egg kinesin-related protein using peptide antibodies. , Cole DG., J Cell Sci. February 1, 1992; 101 ( Pt 2) 291-301.
Development of Microtubule-Dependence of the Chromosome Cycle at the Midblastula Transition in Xenopus laevis Embryos: (Xenopus/cell cycle/chromosomes/microtubutes/midblastula transition). , Clute P., Dev Growth Differ. February 1, 1992; 34 (1): 27-36.
Organization and regulation of cortical microtubules during the first cell cycle of Xenopus eggs. , Schroeder MM., Development. March 1, 1992; 114 (3): 699-709.
Regulation of the microtubule nucleating activity of centrosomes in Xenopus egg extracts: role of cyclin A-associated protein kinase. , Buendia B., J Cell Biol. March 1, 1992; 116 (6): 1431-42.
A purified S6 kinase kinase from Xenopus eggs activates S6 kinase II and autophosphorylates on serine, threonine, and tyrosine residues. , Barrett CB., J Biol Chem. March 5, 1992; 267 (7): 4408-15.
Differential behavior of photoactivated microtubules in growing axons of mouse and frog neurons. , Okabe S., J Cell Biol. April 1, 1992; 117 (1): 105-20.
The multiple beta-tubulin genes of Xenopus: isolation and developmental expression of a germ-cell isotype beta-tubulin gene. , Bieker JJ., Differentiation. May 1, 1992; 50 (1): 15-23.
Microtubule organization during maturation of Xenopus oocytes: assembly and rotation of the meiotic spindles. , Gard DL ., Dev Biol. June 1, 1992; 151 (2): 516-30.
Lattice defects in microtubules: protofilament numbers vary within individual microtubules. , Chrétien D., J Cell Biol. June 1, 1992; 117 (5): 1031-40.
In vitro microtubule-nucleating activity of spindle pole bodies in fission yeast Schizosaccharomyces pombe: cell cycle-dependent activation in xenopus cell-free extracts. , Masuda H., J Cell Biol. June 1, 1992; 117 (5): 1055-66.
Control of microtubule dynamics and length by cyclin A- and cyclin B-dependent kinases in Xenopus egg extracts. , Verde F., J Cell Biol. September 1, 1992; 118 (5): 1097-108.