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Cell Reports|July 24, 2025
19S proteasome loss regulates mitotic spindle assembly through a ubiquitin-independent degradation mechanismOcéane Marescal, Iain M CheesemanCell|July 23, 2013
Cortical dynein and asymmetric membrane elongation coordinately position the spindle in anaphaseTomomi Kiyomitsu, Iain M CheesemanCurrent Biology : CB|January 24, 2004
Cell division: AAAtacking the mitotic spindleIain M Cheeseman, Arshad DesaiNature Reviews. Molecular Cell Biology|December 22, 2007
Molecular architecture of the kinetochore-microtubule interfaceIain M Cheeseman, Arshad DesaiDevelopmental Cell|November 10, 2020
Cellular Mechanisms and Regulation of QuiescenceOcéane Marescal, Iain M CheesemanThe Journal of Cell Biology|March 6, 2013
Review series: The functions and consequences of force at kinetochoresFlorencia Rago, Iain M CheesemanBiorxiv : the Preprint Server for Biology|January 20, 2025
19S proteasome loss causes monopolar spindles through ubiquitin-independent KIF11 degradationOcéane Marescal, Iain M CheesemanCurrent Opinion in Cell Biology|August 13, 2010
Kinetochore assembly: if you build it, they will comeKaren E Gascoigne, Iain M CheesemanCurrent Biology : CB|July 22, 2015
Chromosome Segregation: A Spatial Code to Correct Kinetochore-Microtubule AttachmentsJulie K Monda, Iain M CheesemanPageof 14