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The Journal of Cell Biology|October 14, 2021
Kinetochore-bound Mps1 regulates kinetochore-microtubule attachments via Ndc80 phosphorylationKrishna K Sarangapani, Lori B Koch, Christian R Nelson, et al.
Biorxiv : the Preprint Server for Biology|April 27, 2026
KIF18A Maintains Kinetochore-Microtubule Attachments in CIN Cells by Limiting Microtubule PolymerizationCindy Fonseca, Kira Fisher, Ethan Wagner, et al.
Methods in Enzymology|March 18, 2014
Measuring kinetochore-microtubule interaction in vitroJonathan W Driver, Andrew F Powers, Krishna K Sarangapani, et al.
Methods (San Diego, Calif.)|January 26, 2010
Direct physical study of kinetochore-microtubule interactions by reconstitution and interrogation with an optical force clampAndrew D Franck, Andrew F Powers, Daniel R Gestaut, et al.
The EMBO Journal|January 14, 2025
Stable centromere association of the yeast histone variant Cse4 requires its essential N-terminal domainAndrew R Popchock, Sabrine Hedouin, Yizi Mao, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 6, 2018
Minimizing ATP depletion by oxygen scavengers for single-molecule fluorescence imaging in live cellsSeung-Ryoung Jung, Yi Deng, Christopher Kushmerick, et al.
Cell Cycle (Georgetown, Tex.)|July 7, 2010
Kip3, the yeast kinesin-8, is required for clustering of kinetochores at metaphaseMegan M Wargacki, Jessica C Tay, Eric G Muller, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 17, 2006
The Dam1 kinetochore complex harnesses microtubule dynamics to produce force and movementCharles L Asbury, Daniel R Gestaut, Andrew F Powers, et al.
Redox Biology|March 14, 2014
Resolution of oxidative stress by thioredoxin reductase: Cysteine versus selenocysteineBrian Cunniff, Gregg W Snider, Nicholas Fredette, et al.
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