Linda Wordeman
Linda Wordeman
Professor of Physiology & Biophysics, Univ. of Washington School of Medicine
Verified email at - Homepage
Cited by
Cited by
A standardized kinesin nomenclature
CJ Lawrence, RK Dawe, KR Christie, DW Cleveland, SC Dawson, ...
The Journal of cell biology 167 (1), 19-22, 2004
[39] Preparation of modified tubulins
A Hyman, D Drechsel, D Kellogg, S Salser, K Sawin, P Steffen, ...
Methods in enzymology 196, 478-485, 1991
Aurora B regulates MCAK at the mitotic centromere
PD Andrews, Y Ovechkina, N Morrice, M Wagenbach, K Duncan, ...
Developmental cell 6 (2), 253-268, 2004
Localization of cytoplasmic dynein to mitotic spindles and kinetochores
ER Steuer, L Wordeman, TA Schroer, MP Sheetz
Nature 345 (6272), 266-268, 1990
Identification and partial characterization of mitotic centromere-associated kinesin, a kinesin-related protein that associates with centromeres during mitosis.
L Wordeman, TJ Mitchison
The Journal of cell biology 128 (1), 95-104, 1995
The kinesin-related protein MCAK is a microtubule depolymerase that forms an ATP-hydrolyzing complex at microtubule ends
AW Hunter, M Caplow, DL Coy, WO Hancock, S Diez, L Wordeman, ...
Molecular cell 11 (2), 445-457, 2003
Tubulin tyrosination is a major factor affecting the recruitment of CAP-Gly proteins at microtubule plus ends
L Peris, M Thery, J Fauré, Y Saoudi, L Lafanechère, JK Chilton, ...
The Journal of cell biology 174 (6), 839-849, 2006
Mitotic centromere–associated kinesin is important for anaphase chromosome segregation
T Maney, AW Hunter, M Wagenbach, L Wordeman
The Journal of cell biology 142 (3), 787-801, 1998
Motor-dependent microtubule disassembly driven by tubulin tyrosination
L Peris, M Wagenbach, L Lafanechère, J Brocard, AT Moore, F Kozielski, ...
Journal of Cell Biology 185 (7), 1159-1166, 2009
The kinesin-8 motor Kif18A suppresses kinetochore movements to control mitotic chromosome alignment
J Stumpff, G Von Dassow, M Wagenbach, C Asbury, L Wordeman
Developmental cell 14 (2), 252-262, 2008
The Ndc80 kinetochore complex forms load-bearing attachments to dynamic microtubule tips via biased diffusion
AF Powers, AD Franck, DR Gestaut, J Cooper, B Gracyzk, RR Wei, ...
Cell 136 (5), 865-875, 2009
The kinesin-13 proteins Kif2a, Kif2b, and Kif2c/MCAK have distinct roles during mitosis in human cells
AL Manning, NJ Ganem, SF Bakhoum, M Wagenbach, L Wordeman, ...
Molecular biology of the cell 18 (8), 2970-2979, 2007
Cooperation of the Dam1 and Ndc80 kinetochore complexes enhances microtubule coupling and is regulated by aurora B
JF Tien, NT Umbreit, DR Gestaut, AD Franck, J Cooper, L Wordeman, ...
Journal of Cell Biology 189 (4), 713-723, 2010
Increased microtubule assembly rates influence chromosomal instability in colorectal cancer cells
N Ertych, A Stolz, A Stenzinger, W Weichert, S Kaulfuß, P Burfeind, ...
Nature cell biology 16 (8), 779-791, 2014
How kinesin motor proteins drive mitotic spindle function: Lessons from molecular assays
L Wordeman
Seminars in cell & developmental biology 21 (3), 260-268, 2010
Molecular dissection of the microtubule depolymerizing activity of mitotic centromere-associated kinesin
T Maney, M Wagenbach, L Wordeman
Journal of Biological Chemistry 276 (37), 34753-34758, 2001
Human centromeres and neocentromeres show identical distribution patterns of> 20 functionally important kinetochore-associated proteins.
R Saffery, DV Irvine, B Griffiths, P Kalitsis, L Wordeman, KHA Choo
Human molecular genetics 9 (2), 175-185, 2000
Phosphoregulation and depolymerization-driven movement of the Dam1 complex do not require ring formation
DR Gestaut, B Graczyk, J Cooper, PO Widlund, A Zelter, L Wordeman, ...
Nature cell biology 10 (4), 407-414, 2008
Kif18A and chromokinesins confine centromere movements via microtubule growth suppression and spatial control of kinetochore tension
J Stumpff, M Wagenbach, A Franck, CL Asbury, L Wordeman
Developmental cell 22 (5), 1017-1029, 2012
Evidence for kinesin-related proteins in the mitotic apparatus using peptide antibodies
KE Sawin, TJ Mitchison, LG Wordeman
Journal of Cell Science 101 (2), 303-313, 1992
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