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Biology Open|August 2, 2023
Saccharomyces cerevisiae deficient in the early anaphase release of Cdc14 can traverse anaphase I without ribosomal DNA disjunction and successfully complete meiosisChristopher M YellmanG3 (Bethesda, Md.)|July 19, 2020
Precise Replacement of Saccharomyces cerevisiae Proteasome Genes with Human Orthologs by an Integrative Targeting MethodChristopher M YellmanMethods in Molecular Biology (Clifton, N.J.)|June 10, 2004
Assaying the spindle checkpoint in the budding yeast Saccharomyces cerevisiaeChristopher M Yellman, Daniel J BurkePlos One|June 20, 2015
Cdc14 Early Anaphase Release, FEAR, Is Limited to the Nucleus and Dispensable for Efficient Mitotic ExitChristopher M Yellman, G Shirleen RoederMolecular Biology of the Cell|November 30, 2005
The role of Cdc55 in the spindle checkpoint is through regulation of mitotic exit in Saccharomyces cerevisiaeChristopher M Yellman, Daniel J BurkeThe EMBO Journal|May 29, 2016
Ubiquitin-like domains can target to the proteasome but proteolysis requires a disordered regionHouqing Yu, Grace Kago, Christopher M Yellman, et al.Genetics|January 19, 2008
Differential regulation of anaphase promoting complex/cyclosome substrates by the spindle assembly checkpoint in Saccharomyces cerevisiaeBrice E Keyes, Christopher M Yellman, Daniel J BurkePlos Genetics|January 26, 2013
Centromere-like regions in the budding yeast genomePhilippe Lefrançois, Raymond K Auerbach, Christopher M Yellman, et al.The Journal of Biological Chemistry|January 9, 2014
Yeast cells expressing the human mitochondrial DNA polymerase reveal correlations between polymerase fidelity and human disease progressionYufeng Qian, Aashiq H Kachroo, Christopher M Yellman, et al.Cell|November 21, 2017
Precise Editing at DNA Replication Forks Enables Multiplex Genome Engineering in EukaryotesEdward M Barbieri, Paul Muir, Benjamin O Akhuetie-Oni, et al.Pageof 2