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Molecular Biology of the Cell|February 26, 2016
Divergent microtubule assembly rates after short- versus long-term loss of end-modulating kinesinsLinda Wordeman, Justin Decarreau, Juan Jesus Vicente, et al.Current Biology : CB|October 6, 2009
Tyrosines in the kinesin-5 head domain are necessary for phosphorylation by Wee1 and for mitotic spindle integrityKristin Garcia, Jason Stumpff, Tod Duncan, et al.Nature Structural & Molecular Biology|December 8, 2009
Catalysis of the microtubule on-rate is the major parameter regulating the depolymerase activity of MCAKJeremy R Cooper, Michael Wagenbach, Charles L Asbury, et al.Structure (London, England : 1993)|July 29, 2014
Nucleotide exchange in dimeric MCAK induces longitudinal and lateral stress at microtubule ends to support depolymerizationKyle M Burns, Mike Wagenbach, Linda Wordeman, et al.Molecular Biology of the Cell|October 30, 2023
Modification of the neck-linker of KIF18A alters Microtubule subpopulation preferenceKatelyn A Queen, Alisa Cario, Christopher L Berger, et al.Biorxiv : the Preprint Server for Biology|May 19, 2023
Modification of the Neck Linker of KIF18A Alters Microtubule Subpopulation PreferenceKatelyn A Queen, Alisa Cario, Christopher L Berger, et al.Critical Reviews in Biochemistry and Molecular Biology|May 6, 2016
Molecular insight into the regulation and function of MCAKAndreas Ritter, Nina-Naomi Kreis, Frank Louwen, et al.Molecular Biology of the Cell|November 21, 2019
Functional characterization of MCAK/Kif2C cancer mutations using high-throughput microscopic analysisMike Wagenbach, Juan Jesus Vicente, Yulia Ovechkina, et al.Oncotarget|January 18, 2012
Mitotic centromere-associated kinesin (MCAK): a potential cancer drug targetMourad Sanhaji, Claire T Friel, Linda Wordeman, et al.FEBS Letters|August 12, 2004
MCAK, a Kin I kinesin, increases the catastrophe frequency of steady-state HeLa cell microtubules in an ATP-dependent manner in vitroCori N Newton, Michael Wagenbach, Yulia Ovechkina, et al.Pageof 13