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Summary Anatomy Item Literature (533) Expression Attributions Wiki
ECB-ANAT-70

Papers associated with microtubule

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Purification and assay of kinesin from sea urchin eggs and early embryos., Buster D., J Cell Sci Suppl. January 1, 1991; 14 109-15.


Reactivation of isolated mitotic apparatus: metaphase versus anaphase spindles., Palazzo RE., Cell Motil Cytoskeleton. January 1, 1991; 18 (4): 304-18.


Characterization of alpha 2 beta 2 and alpha 2 forms of kinesin., Hackney DD., Biochem Biophys Res Commun. January 31, 1991; 174 (2): 810-5.


Inner arm dynein ATPase fraction of sea urchin sperm flagella causes active sliding of axonemal outer doublet microtubule., Wada S., Biochem Biophys Res Commun. February 28, 1991; 175 (1): 173-8.


Nucleotide specificity of the enzymatic and motile activities of dynein, kinesin, and heavy meromyosin., Shimizu T., J Cell Biol. March 1, 1991; 112 (6): 1189-97.


Identification of a major maturation-activated acetyl-CoA carboxylase kinase in sea star oocytes as p44mpk., Pelech SL., Biochem J. March 15, 1991; 274 ( Pt 3) 759-67.


Change in the heterogeneous distribution of tubulin isotypes in mitotic microtubules of the sea urchin egg by treatment with microtubule depolymerizing or stabilizing drugs., Oka MT., Cell Struct Funct. April 1, 1991; 16 (2): 125-34.


Subcellular localization and sequence of sea urchin kinesin heavy chain: evidence for its association with membranes in the mitotic apparatus and interphase cytoplasm., Wright BD., J Cell Biol. May 1, 1991; 113 (4): 817-33.


[Cell division and the microtubular cytoskeleton]., Izutsu K., Hum Cell. June 1, 1991; 4 (2): 100-8.


Mitogen-activated Swiss mouse 3T3 RSK kinases I and II are related to pp44mpk from sea star oocytes and participate in the regulation of pp90rsk activity., Chung J., Proc Natl Acad Sci U S A. June 1, 1991; 88 (11): 4981-5.


Dilution of individual microtubules observed in real time in vitro: evidence that cap size is small and independent of elongation rate., Walker RA., J Cell Biol. July 1, 1991; 114 (1): 73-81.


Effects of 6-dimethylaminopurine on microtubules and putative intermediate filaments in sea urchin embryos., Dufresne L., J Cell Sci. August 1, 1991; 99 ( Pt 4) 721-30.


Multiple nucleotide-binding sites in the sequence of dynein beta heavy chain., Gibbons IR., Nature. August 15, 1991; 352 (6336): 640-3.


Four ATP-binding sites in the midregion of the beta heavy chain of dynein., Ogawa K., Nature. August 15, 1991; 352 (6336): 643-5.


Definition of a consensus sequence for peptide substrate recognition by p44mpk, the meiosis-activated myelin basic protein kinase., Clark-Lewis I., J Biol Chem. August 15, 1991; 266 (23): 15180-4.


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.


Evidence for an inequality in the forces that generate principal and reverse bends in sperm flagella., Eshel D., J Cell Sci. September 1, 1991; 100 ( Pt 1) 213-8.


Organization of the sea urchin egg endoplasmic reticulum and its reorganization at fertilization., Terasaki M., J Cell Biol. September 1, 1991; 114 (5): 929-40.


Microtubule sliding in swimming sperm flagella: direct and indirect measurements on sea urchin and tunicate spermatozoa., Brokaw CJ., J Cell Biol. September 1, 1991; 114 (6): 1201-15.


Direct experimental evidence for the existence, structural basis and function of astral forces during anaphase B in vivo., Aist JR., J Cell Sci. October 1, 1991; 100 ( Pt 2) 279-88.


Membrane association of flagellar creatine kinase in the sperm phosphocreatine shuttle., Quest AF., J Biol Chem. October 15, 1991; 266 (29): 19803-11.


Directed movements of ciliary and flagellar membrane components: a review., Bloodgood RA., Biol Cell. January 1, 1992; 76 (3): 291-301.


Two distinct isoforms of sea urchin egg dynein., Grissom PM., Cell Motil Cytoskeleton. January 1, 1992; 21 (4): 281-92.


Activation of maternal centrosomes in unfertilized sea urchin eggs., Schatten H., Cell Motil Cytoskeleton. January 1, 1992; 23 (1): 61-70.


Microtubule motors in the early sea urchin embryo., Wright BD., Curr Top Dev Biol. January 1, 1992; 26 71-91.


Buffer conditions and non-tubulin factors critically affect the microtubule dynamic instability of sea urchin egg tubulin., Simon JR., Cell Motil Cytoskeleton. January 1, 1992; 21 (1): 1-14.


End-stabilized microtubules observed in vitro: stability, subunit, interchange, and breakage., Dye RB., Cell Motil Cytoskeleton. January 1, 1992; 21 (3): 171-86.


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.


Distribution of cytoplasmic and axonemal dyneins in rat tissues., Yoshida T., J Cell Sci. March 1, 1992; 101 ( Pt 3) 579-87.


High-frequency vibration in flagellar axonemes with amplitudes reflecting the size of tubulin., Kamimura S., J Cell Biol. March 1, 1992; 116 (6): 1443-54.


Evidence for a non-tubulin spindle matrix and for spindle components immunologically related to tektin filaments., Steffen W., J Cell Sci. April 1, 1992; 101 ( Pt 4) 809-22.


Selective inhibition of cytokinesis in sea urchin embryos by the marine natural product pseudopterolide., Grace KJ., Mol Pharmacol. April 1, 1992; 41 (4): 631-8.


Relocation and distinct subcellular localization of p34cdc2-cyclin B complex at meiosis reinitiation in starfish oocytes., Ookata K., EMBO J. May 1, 1992; 11 (5): 1763-72.


A novel 24-kDa microtubule-associated protein purified from sea urchin eggs., Maekawa S., Eur J Biochem. May 1, 1992; 205 (3): 1195-200.


Conditions for assembly of tubulin-based structures in unfertilized sea urchin eggs. Spirals, monasters and cytasters., Harris PJ., J Cell Sci. July 1, 1992; 102 ( Pt 3) 557-67.


Tubulin protofilaments and kinesin-dependent motility., Kamimura S., J Cell Biol. August 1, 1992; 118 (4): 865-75.


The motile beta/IC1 subunit of sea urchin sperm outer arm dynein does not form a rigor bond., Moss AG., J Cell Biol. September 1, 1992; 118 (5): 1177-88.


The alpha subunit of sea urchin sperm outer arm dynein mediates structural and rigor binding to microtubules., Moss AG., J Cell Biol. September 1, 1992; 118 (5): 1189-200.


A 62-kD protein required for mitotic progression is associated with the mitotic apparatus during M-phase and with the nucleus during interphase., Johnston JA., J Cell Biol. November 1, 1992; 119 (4): 843-54.


Stabilization of sea urchin flagellar microtubules by histone H1., Multigner L., Nature. November 5, 1992; 360 (6399): 33-9.


Okadaic acid induces interphase to mitotic-like microtubule dynamic instability by inactivating rescue., Gliksman NR., J Cell Biol. December 1, 1992; 119 (5): 1271-6.


Brain microtubule-associated proteins modulate microtubule dynamic instability in vitro. Real-time observations using video microscopy., Pryer NK., J Cell Sci. December 1, 1992; 103 ( Pt 4) 965-76.


Cytoplasmic extracts from the eggs of sea urchins and clams for the study of microtubule-associated motility and bundling., Gliksman NR., Methods Cell Biol. January 1, 1993; 39 237-51.


Unambiguous classification of microtubule-ends in vitro: dynamic properties of the plus- and minus-ends., Kowalski RJ., Cell Motil Cytoskeleton. January 1, 1993; 26 (4): 282-90.


Centrosome inheritance in starfish zygotes. II: Selective suppression of the maternal centrosome during meiosis., Sluder G., Dev Biol. January 1, 1993; 155 (1): 58-67.


Microtubule-associated motility in cytoplasmic extracts of sea urchin eggs., Gliksman NR., Cell Motil Cytoskeleton. January 1, 1993; 24 (3): 167-78.


EMAP, an echinoderm microtubule-associated protein found in microtubule-ribosome complexes., Suprenant KA., J Cell Sci. February 1, 1993; 104 (2): 445-50.


Recombinant kinesin motor domain binds to beta-tubulin and decorates microtubules with a B surface lattice., Song YH., Proc Natl Acad Sci U S A. March 1, 1993; 90 (5): 1671-5.


Taxol-induced flexibility of microtubules and its reversal by MAP-2 and Tau., Dye RB., J Biol Chem. April 5, 1993; 268 (10): 6847-50.

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