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Developmental Cell|February 21, 2017
Large-Scale Analysis of CRISPR/Cas9 Cell-Cycle Knockouts Reveals the Diversity of p53-Dependent Responses to Cell-Cycle DefectsKara L McKinley, Iain M CheesemanNature|April 26, 2023
Alternative CDC20 translational isoforms tune mitotic arrest durationMary-Jane Tsang, Iain M CheesemanCurrent Biology : CB|October 13, 2012
Kinetochore structure: pulling answers from yeastDavid M Kern, Iain M CheesemanThe Journal of Cell Biology|March 27, 2013
CDK-dependent phosphorylation and nuclear exclusion coordinately control kinetochore assembly stateKaren E Gascoigne, Iain M CheesemanDevelopmental Cell|November 13, 2008
Toward a molecular structure of the eukaryotic kinetochoreJulie P I Welburn, Iain M CheesemanMolecular Biology of the Cell|October 23, 2012
The microtubule-binding protein Cep170 promotes the targeting of the kinesin-13 depolymerase Kif2b to the mitotic spindleJulie P I Welburn, Iain M CheesemanThe Journal of Cell Biology|April 17, 2002
Simple centromere, complex kinetochore: linking spindle microtubules and centromeric DNA in budding yeastIain M Cheeseman, David G Drubin, Georjana BarnesCurrent Biology : CB|February 10, 2015
Distinct organization and regulation of the outer kinetochore KMN network downstream of CENP-C and CENP-TFlorencia Rago, Karen E Gascoigne, Iain M CheesemanMolecular Biology of the Cell|November 30, 2007
KNL1 and the CENP-H/I/K complex coordinately direct kinetochore assembly in vertebratesIain M Cheeseman, Tetsuya Hori, Tatsuo Fukagawa, et al.Developmental Cell|January 1, 2025
Co-essentiality analysis identifies PRR12 as a cohesin interacting protein and contributor to genomic integrityAlexandra L Nguyen, Eric M Smith, Iain M CheesemanPageof 16