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Methods in Molecular Biology (Clifton, N.J.)|August 27, 2011
Studying S-phase DNA damage checkpoints using the fission yeast Schizosaccharomyces pombeNicholas Willis, Nicholas RhindPlos One|September 12, 2023
pomBseen: An automated pipeline for analysis of fission yeast imagesMakoto Ohira, Nicholas RhindTrends in Genetics : TIG|April 24, 2012
Replication timing and its emergence from stochastic processesJohn Bechhoefer, Nicholas RhindMolecular Biology of the Cell|November 28, 2008
Mus81, Rhp51(Rad51), and Rqh1 form an epistatic pathway required for the S-phase DNA damage checkpointNicholas Willis, Nicholas RhindPlos Genetics|March 25, 2021
The capacity of origins to load MCM establishes replication timing patternsLivio Dukaj, Nicholas RhindCell Cycle (Georgetown, Tex.)|November 15, 2006
Cdc2 tyrosine phosphorylation is not required for the S-phase DNA damage checkpoint in fission yeastNaveen Kommajosyula, Nicholas RhindGenetics|January 13, 2010
The fission yeast Rad32(Mre11)-Rad50-Nbs1 complex acts both upstream and downstream of checkpoint signaling in the S-phase DNA damage checkpointNicholas Willis, Nicholas RhindCold Spring Harbor Perspectives in Biology|October 3, 2012
Signaling pathways that regulate cell divisionNicholas Rhind, Paul RussellProceedings of the National Academy of Sciences of the United States of America|August 6, 2021
The chromatin-binding domain of Ki-67 together with p53 protects human chromosomes from mitotic damageOsama Garwain, Xiaoming Sun, Divya Ramalingam Iyer, et al.Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology|May 14, 2016
How and why multiple MCMs are loaded at origins of DNA replicationShankar P Das, Nicholas RhindPageof 7