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EMBO Reports|October 17, 2022
Dynamic chromosomal interactions and control of heterochromatin positioning by Ki-67Tom van Schaik, Stefano G Manzo, Athanasios E Vouzas, et al.Nature Communications|July 19, 2020
3D genome organization contributes to genome instability at fragile sitesDan Sarni, Takayo Sasaki, Michal Irony Tur-Sinai, et al.The Journal of Cell Biology|January 12, 2011
Highly stable loading of Mcm proteins onto chromatin in living cells requires replication to unloadMarjorie A Kuipers, Timothy J Stasevich, Takayo Sasaki, et al.Genome Research|May 26, 2012
Abnormal developmental control of replication-timing domains in pediatric acute lymphoblastic leukemiaTyrone Ryba, Dana Battaglia, Bill H Chang, et al.Plos Biology|October 10, 2008
Global reorganization of replication domains during embryonic stem cell differentiationIchiro Hiratani, Tyrone Ryba, Mari Itoh, et al.Frontiers in Cell and Developmental Biology|June 26, 2023
Transposase expression, element abundance, element size, and DNA repair determine the mobility and heritability of <i>PIF</i>/<i>Pong</i>/<i>Harbinger</i> transposable elementsPriscilla S Redd, Lisette Payero, David M Gilbert, et al.Lab on a Chip|February 2, 2013
Development of a single-cell array for large-scale DNA fluorescence in situ hybridizationYingru Liu, Brett Kirkland, James Shirley, et al.Genome Research|May 9, 2018
Allele-specific control of replication timing and genome organization during developmentJuan Carlos Rivera-Mulia, Andrew Dimond, Daniel Vera, et al.The EMBO Journal|August 2, 2012
Mouse Rif1 is a key regulator of the replication-timing programme in mammalian cellsDaniela Cornacchia, Vishnu Dileep, Jean-Pierre Quivy, et al.Human Molecular Genetics|June 28, 2012
Replication-timing boundaries facilitate cell-type and species-specific regulation of a rearranged human chromosome in mouseBenjamin D Pope, Tamir Chandra, Quinton Buckley, et al.Pageof 16