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Cell Reports|December 8, 2022
Chromosome arm length, and a species-specific determinant, define chromosome arm widthYasutaka Kakui, Christopher Barrington, Yoshiharu Kusano, et al.
Molecular Cell|January 31, 2017
PP2ACdc55 Phosphatase Imposes Ordered Cell-Cycle Phosphorylation by Opposing Threonine PhosphorylationMolly Godfrey, Sandra A Touati, Meghna Kataria, et al.
FEBS Letters|August 26, 2009
System-level feedbacks control cell cycle progressionOrsolya Kapuy, Enuo He, Sandra López-Avilés, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 28, 2011
System-level feedbacks make the anaphase switch irreversibleEnuo He, Orsolya Kapuy, Raquel A Oliveira, et al.
STAR Protocols|July 21, 2020
Assessing Budding Yeast Phosphoproteome Dynamics in a Time-Resolved Manner using TMT10plex Mass Tag LabelingAndrew W Jones, Helen R Flynn, Frank Uhlmann, et al.
Genes & Development|August 19, 2008
Identification of cis-acting sites for condensin loading onto budding yeast chromosomesClaudio D'Ambrosio, Christine Katrin Schmidt, Yuki Katou, et al.
Cell Reports|November 14, 2019
Cdc14 and PP2A Phosphatases Cooperate to Shape Phosphoproteome Dynamics during Mitotic ExitSandra A Touati, Lorena Hofbauer, Andrew W Jones, et al.
Science Advances|June 5, 2021
Budding yeast relies on G1 cyclin specificity to couple cell cycle progression with morphogenetic developmentDeniz Pirincci Ercan, Florine Chrétien, Probir Chakravarty, et al.
Journal of Molecular Biology|October 7, 2004
Conformational changes induced by nucleotide binding in Cdc6/ORC from Aeropyrum pernixMartin R Singleton, Renaud Morales, Ian Grainge, et al.
Nature Structural & Molecular Biology|November 21, 2018
A PxL motif promotes timely cell cycle substrate dephosphorylation by the Cdc14 phosphataseMeghna Kataria, Stephane Mouilleron, Moon-Hyeong Seo, et al.
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