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Methods in Molecular Biology (Clifton, N.J.)|June 10, 2006
Observing S-phase dynamics of histone modifications with fluorescently labeled antibodiesRong Wu, Anna V Terry, David M GilbertNucleic Acids Research|February 6, 2004
Structure of a palindromic amplicon junction implicates microhomology-mediated end joining as a mechanism of sister chromatid fusion during gene amplificationYukiko Okuno, Peter J Hahn, David M GilbertGenome Biology|March 27, 2020
High-resolution Repli-Seq defines the temporal choreography of initiation, elongation and termination of replication in mammalian cellsPeiyao A Zhao, Takayo Sasaki, David M GilbertThe Journal of Cell Biology|July 13, 2006
Uncoupling global and fine-tuning replication timing determinants for mouse pericentric heterochromatinRong Wu, Prim B Singh, David M GilbertThe Journal of Cell Biology|April 23, 2003
Spatial distribution and specification of mammalian replication origins during G1 phaseFeng Li, Jianhua Chen, Eduardo Solessio, et al.Current Protocols|January 5, 2022
Mapping Replication Timing in Single Mammalian CellsDaniel A Bartlett, Vishnu Dileep, Timour Baslan, et al.Advances in Experimental Medicine and Biology|January 23, 2018
Replication Domains: Genome Compartmentalization into Functional Replication UnitsPeiyao A Zhao, Juan Carlos Rivera-Mulia, David M GilbertCurrent Opinion in Genetics & Development|April 7, 2009
Replication timing and transcriptional control: beyond cause and effect--part IIIchiro Hiratani, Shin-ichiro Takebayashi, Junjie Lu, et al.Experimental Cell Research|June 14, 2005
Chinese hamster ORC subunits dynamically associate with chromatin throughout the cell-cycleAdrian J McNairn, Yukiko Okuno, Tom Misteli, et al.Molecular Biology of the Cell|March 25, 2005
Differential subnuclear localization and replication timing of histone H3 lysine 9 methylation statesRong Wu, Anna V Terry, Prim B Singh, et al.Pageof 16