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

Papers associated with microtubule

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Mitosis and motor proteins in the filamentous ascomycete, Nectria haematococca, and some related fungi., Aist JR., Int Rev Cytol. January 1, 2002; 212 239-63.


Use of frozen-hydrated axonemes to assess imaging parameters and resolution limits in cryoelectron tomography., McEwen BF., J Struct Biol. January 1, 2002; 138 (1-2): 47-57.


Polarized fluorescence microscopy of individual and many kinesin motors bound to axonemal microtubules., Peterman EJ., Biophys J. November 1, 2001; 81 (5): 2851-63.


Saturable binding of the echinoderm microtubule-associated protein (EMAP) on microtubules, but not filamentous actin or vimentin filaments., Eichenmüller B., Cell Motil Cytoskeleton. November 1, 2001; 50 (3): 161-72.


Microtubule/organelle motility assays., Waterman-Storer CM., Curr Protoc Cell Biol. May 1, 2001; Chapter 13 Unit 13.1.


Simulation of the mechanism of determining the position of the cleavage furrow in cytokinesis of sea urchin eggs., Yoshigaki T., Math Biosci. March 1, 2001; 170 (1): 17-58.


Model for the motor component of dynein heavy chain based on homology to the AAA family of oligomeric ATPases., Mocz G., Structure. February 7, 2001; 9 (2): 93-103.


Reconstitution of centrosome microtubule nucleation in Spisula., Schnackenberg BJ., Methods Cell Biol. January 1, 2001; 67 149-65.


cDNA isolation, characterization, and protein intracellular localization of a katanin-like p60 subunit from Arabidopsis thaliana., McClinton RS., Protoplasma. January 1, 2001; 216 (3-4): 181-90.


Roles of two homotetrameric kinesins in sea urchin embryonic cell division., Chui KK., J Biol Chem. December 1, 2000; 275 (48): 38005-11.


Analysis of the roles of kinesin and dynein motors in microtubule-based transport in the Caenorhabditis elegans nervous system., Signor D., Methods. December 1, 2000; 22 (4): 317-25.


Preferential incorporation of tubulin into the junctional region of ciliary outer doublet microtubules: a model for treadmilling by lattice dislocation., Stephens RE., Cell Motil Cytoskeleton. October 1, 2000; 47 (2): 130-40.


Novel actions of the antitumor drugs vinflunine and vinorelbine on microtubules., Ngan VK., Cancer Res. September 15, 2000; 60 (18): 5045-51.


MEI-1/MEI-2 katanin-like microtubule severing activity is required for Caenorhabditis elegans meiosis., Srayko M., Genes Dev. May 1, 2000; 14 (9): 1072-84.


C. elegans KLP-11/OSM-3/KAP-1: orthologs of the sea urchin kinesin-II, and mouse KIF3A/KIFB/KAP3 kinesin complexes., Khan ML., DNA Res. April 28, 2000; 7 (2): 121-5.


Calcium regulation of microtubule sliding in reactivated sea urchin sperm flagella., Bannai H., J Cell Sci. March 1, 2000; 113 ( Pt 5) 831-9.


Dynamics of the endoplasmic reticulum and golgi apparatus during early sea urchin development., Terasaki M., Mol Biol Cell. March 1, 2000; 11 (3): 897-914.


Conservation of the WD-repeat, microtubule-binding protein, EMAP, in sea urchins, humans, and the nematode C. elegans., Suprenant KA., Dev Genes Evol. January 1, 2000; 210 (1): 2-10.


Characterization of a microtubule assembly inhibitor from Xenopus oocytes., Govindan B., Cell Motil Cytoskeleton. January 1, 2000; 45 (1): 51-7.


Centrosome alterations induced by formamide cause abnormal spindle pole formations., Schatten H., Cell Biol Int. January 1, 2000; 24 (9): 611-20.


Photoreceptor localization of the KIF3A and KIF3B subunits of the heterotrimeric microtubule motor kinesin II in vertebrate retina., Whitehead JL., Exp Eye Res. November 1, 1999; 69 (5): 491-503.


Microtubules are required for completion of cytokinesis in sea urchin eggs., Larkin K., Dev Biol. October 1, 1999; 214 (1): 215-26.


Isolation of a trans-acting factor involved in localization of Paracentrotus lividus maternal mRNAs., Costa C., RNA. October 1, 1999; 5 (10): 1290-8.


Biophysical properties of stable microtubules in neurites revealed by optical techniques., Kurachi M., Cell Struct Funct. October 1, 1999; 24 (5): 405-12.


Sequence and expression patterns of a human EMAP-related protein-2 (HuEMAP-2)., Lepley DM., Gene. September 17, 1999; 237 (2): 343-9.


Parameters that specify the timing of cytokinesis., Shuster CB., J Cell Biol. September 6, 1999; 146 (5): 981-92.              


Measurements of mechanical properties of the blastula wall reveal which hypothesized mechanisms of primary invagination are physically plausible in the sea urchin Strongylocentrotus purpuratus., Davidson LA., Dev Biol. May 15, 1999; 209 (2): 221-38.


Single-molecule behavior of monomeric and heteromeric kinesins., Pierce DW., Biochemistry. April 27, 1999; 38 (17): 5412-21.


The carboxy-terminal sequence Asp427-Glu432 of beta-tubulin plays an important function in axonemal motility., Audebert S., Eur J Biochem. April 1, 1999; 261 (1): 48-56.


Putative involvement of a 49 kDa protein in microtubule assembly in vitro., Kumagai F., Eur J Cell Biol. February 1, 1999; 78 (2): 109-16.


Effects of the central pair apparatus on microtubule sliding velocity in sea urchin sperm flagella., Yoshimura M., Cell Struct Funct. February 1, 1999; 24 (1): 43-54.


Direct interaction of microtubule- and actin-based transport motors., Huang JD., Nature. January 21, 1999; 397 (6716): 267-70.


Simulation of density gradients of astral microtubules at cell surface in cytokinesis of sea urchin eggs., Yoshigaki T., J Theor Biol. January 21, 1999; 196 (2): 211-24.


Dissociation of the tubulin-sequestering and microtubule catastrophe-promoting activities of oncoprotein 18/stathmin., Howell B., Mol Biol Cell. January 1, 1999; 10 (1): 105-18.


Microtubule severing., Quarmby LM., Cell Motil Cytoskeleton. January 1, 1999; 43 (1): 1-9.


The 77-kDa echinoderm microtubule-associated protein (EMAP) shares epitopes with the mammalian brain MAPs, MAP-2 and tau., Li Q., Biochem Biophys Res Commun. September 18, 1998; 250 (2): 502-5.


Caulerpenyne interferes with microtubule-dependent events during the first mitotic cycle of sea urchin eggs., Pesando D., Eur J Cell Biol. September 1, 1998; 77 (1): 19-26.


Visualization of the GDP-dependent switching in the growth polarity of microtubules., Tanaka-Takiguchi Y., J Mol Biol. July 17, 1998; 280 (3): 365-73.


Chlorpropham [isopropyl N-(3-chlorophenyl) carbamate] disrupts microtubule organization, cell division, and early development of sea urchin embryos., Holy J., J Toxicol Environ Health A. June 26, 1998; 54 (4): 319-33.


Dynein arms are oscillating force generators., Shingyoji C., Nature. June 18, 1998; 393 (6686): 711-4.


Role of fungal dynein in hyphal growth, microtubule organization, spindle pole body motility and nuclear migration., Inoue S., J Cell Sci. June 1, 1998; 111 ( Pt 11) 1555-66.


Reactivation of sea-urchin sperm flagella induced by rapid photolysis of caged ATP., Tani T., J Exp Biol. May 1, 1998; 201 (Pt 10): 1493-503.


Katanin, a microtubule-severing protein, is a novel AAA ATPase that targets to the centrosome using a WD40-containing subunit., Hartman JJ., Cell. April 17, 1998; 93 (2): 277-87.


Purification of a WD repeat protein, EMAP, that promotes microtubule dynamics through an inhibition of rescue., Hamill DR., J Biol Chem. April 10, 1998; 273 (15): 9285-91.


Role of the kinesin neck region in processive microtubule-based motility., Romberg L., J Cell Biol. March 23, 1998; 140 (6): 1407-16.      


Low potency of taxol at microtubule minus ends: implications for its antimitotic and therapeutic mechanism., Derry WB., Cancer Res. March 15, 1998; 58 (6): 1177-84.


Centrosome-attracting body: a novel structure closely related to unequal cleavages in the ascidian embryo., Hibino T., Dev Growth Differ. February 1, 1998; 40 (1): 85-95.


An anaphase calcium signal controls chromosome disjunction in early sea urchin embryos., Groigno L., Cell. January 23, 1998; 92 (2): 193-204.


Involvement of the cytoskeleton in localization of Paracentrotus lividus maternal BEP mRNAs and proteins., Romancino DP., Exp Cell Res. January 10, 1998; 238 (1): 101-9.


Unidirectional movement of fluorescent microtubules on rows of dynein arms of disintegrated axonemes., Yamada A., J Cell Sci. January 1, 1998; 111 ( Pt 1) 93-8.

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