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Current Biology : CB|May 25, 2021
Molecular mechanisms underlying microtubule growth dynamicsJoseph M Cleary, William O HancockBiorxiv : the Preprint Server for Biology|May 19, 2023
Interface-acting nucleotide controls polymerization dynamics at microtubule plus- and minus-endsLauren A McCormick, Joseph M Cleary, William O Hancock, et al.Elife|January 5, 2024
Interface-acting nucleotide controls polymerization dynamics at microtubule plus- and minus-endsLauren A McCormick, Joseph M Cleary, William O Hancock, et al.Journal of the Royal Society, Interface|April 20, 2018
Heterogeneous ceramide distributions alter spatially resolved growth of <i>Staphylococcus aureus</i> on human stratum corneumJoseph M Cleary, Zachary W Lipsky, Minyoung Kim, et al.Elife|April 14, 2022
Measurements and simulations of microtubule growth imply strong longitudinal interactions and reveal a role for GDP on the elongating endJoseph M Cleary, Tae Kim, Annan S I Cook, et al.Current Biology : CB|July 9, 2019
Kinesin-5 Promotes Microtubule Nucleation and Assembly by Stabilizing a Lattice-Competent Conformation of TubulinGeng-Yuan Chen, Joseph M Cleary, Ana B Asenjo, et al.Journal of Cell Science|June 7, 2021
Trim9 and Klp61F promote polymerization of new dendritic microtubules along parallel microtubulesChengye Feng, Joseph M Cleary, Gregory O Kothe, et al.Protein Engineering, Design & Selection : PEDS|April 14, 2007
Molecular modeling suggests induced fit of Family I carbohydrate-binding modules with a broken-chain cellulose surfaceMark R Nimlos, James F Matthews, Michael F Crowley, et al.Carbohydrate Research|August 25, 2009
Computational simulations of the Trichoderma reesei cellobiohydrolase I acting on microcrystalline cellulose Ibeta: the enzyme-substrate complexLinghao Zhong, James F Matthews, Peter I Hansen, et al.Pageof 1