The Temporal Program of Chromosome Replication: Genomewide Replication in clb5Δ Saccharomyces cerevisiae
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David Collingwood | Jeffrey J Delrow | J. Delrow | W. L. Fangman | M. Raghuraman | B. J. Brewer | D. Collingwood | G. Alvino | David H. Collingwood | Bonita J Brewer | L. Danielson | Gina M. Alvino | Heather J McCune | Laura S Danielson | Gina M Alvino | Walton L Fangman | M K Raghuraman
[1] F. Cross,et al. CLB5: a novel B cyclin from budding yeast with a role in S phase. , 1992, Genes & development.
[2] M. Parrish,et al. Mutations that affect vacuole biogenesis inhibit proliferation of the endoplasmic reticulum in Saccharomyces cerevisiae. , 2002, Genetics.
[3] R. McCarroll,et al. Time of replication of yeast centromeres and telomeres , 1988, Cell.
[4] Aaron Bensimon,et al. DNA replication origins fire stochastically in fission yeast. , 2005, Molecular biology of the cell.
[5] Craig J. Benham,et al. OriDB: a DNA replication origin database , 2006, Nucleic Acids Res..
[6] M. Mendenhall,et al. Regulation of Cdc28 Cyclin-Dependent Protein Kinase Activity during the Cell Cycle of the Yeast Saccharomyces cerevisiae , 1998, Microbiology and Molecular Biology Reviews.
[7] R. Hand. Regulation of DNA replication on subchromosomal units of mammalian cells , 1975, The Journal of cell biology.
[8] Srinka Ghosh,et al. Temporal profile of replication of human chromosomes. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[9] J. Huberman,et al. The in vivo replication origin of the yeast 2μm plasmid , 1987, Cell.
[10] Gerald R. Fink,et al. Methods in Yeast Genetics: A Laboratory Course Manual , 1987 .
[11] W. L. Fangman,et al. Multiple determinants controlling activation of yeast replication origins late in S phase. , 1996, Genes & development.
[12] D. Lockshon,et al. The arrest of replication forks in the rDNA of yeast occurs independently of transcription , 1992, Cell.
[13] N. Rhind,et al. DNA replication timing: random thoughts about origin firing , 2006, Nature Cell Biology.
[14] G. Tokiwa,et al. The WHI1+ gene of Saccharomyces cerevisiae tethers cell division to cell size and is a cyclin homolog. , 1988, The EMBO journal.
[15] Michael Grunstein,et al. Histone acetylation regulates the time of replication origin firing. , 2002, Molecular cell.
[16] C. Rivin,et al. Replication fork rate and origin activation during the S phase of Saccharomyces cerevisiae , 1980, The Journal of cell biology.
[17] Nick Gilbert,et al. Chromatin Architecture of the Human Genome Gene-Rich Domains Are Enriched in Open Chromatin Fibers , 2004, Cell.
[18] G. Fink,et al. Methods in yeast genetics , 1979 .
[19] F. Cross,et al. CLB5-dependent activation of late replication origins in S. cerevisiae. , 1998, Molecular cell.
[20] David Collingwood,et al. Replication in Hydroxyurea: It's a Matter of Time , 2007, Molecular and Cellular Biology.
[21] V. Larionov,et al. The study of a rDNA replicator in Saccharomyces , 1983, Current Genetics.
[22] A. Donaldson. Shaping time: chromatin structure and the DNA replication programme. , 2005, Trends in genetics : TIG.
[23] Steven B. Haase,et al. Distinct Mechanisms Control the Stability of the Related S-Phase Cyclins Clb5 and Clb6 , 2006, Molecular and Cellular Biology.
[24] K. Kitada,et al. Mapping of early firing origins on a replication profile of budding yeast , 2002, Genes to cells : devoted to molecular & cellular mechanisms.
[25] C. Newlon,et al. Time of replication of ARS elements along yeast chromosome III , 1989, Molecular and cellular biology.
[26] Grigoriy E. Pinchuk,et al. Stochastic hybrid modeling of DNA replication across a complete genome , 2009 .
[27] T. Tsukiyama,et al. ATP-dependent chromatin remodeling shapes the DNA replication landscape , 2008, Nature Structural &Molecular Biology.
[28] Ronald W. Davis,et al. Replication dynamics of the yeast genome. , 2001, Science.
[29] John J. Wyrick,et al. Genome-Wide Distribution of ORC and MCM Proteins in S. cerevisiae: High-Resolution Mapping of Replication Origins , 2001, Science.
[30] W. L. Fangman,et al. A position effect on the time of replication origin activation in yeast , 1992, Cell.
[31] David Collingwood,et al. Genomic mapping of single-stranded DNA in hydroxyurea-challenged yeasts identifies origins of replication , 2006, Nature Cell Biology.
[32] C. Kooperberg,et al. Widespread Collaboration of Isw2 and Sin3-Rpd3 Chromatin Remodeling Complexes in Transcriptional Repression , 2001, Molecular and Cellular Biology.
[33] W. L. Fangman,et al. The localization of replication origins on ARS plasmids in S. cerevisiae , 1987, Cell.
[34] W. L. Fangman,et al. Analysis of the temporal program of replication initiation in yeast chromosomes , 1995, Journal of Cell Science.
[35] J. Huberman,et al. The in vivo replication origin of the yeast 2 microns plasmid. , 1987, Cell.
[36] Conrad A. Nieduszynski,et al. Genome-wide identification of replication origins in yeast by comparative genomics. , 2006, Genes & development.
[37] W. L. Fangman,et al. Cdc7 is required throughout the yeast S phase to activate replication origins. , 1998, Genes & development.
[38] K Nasmyth,et al. CLB5 and CLB6, a new pair of B cyclins involved in DNA replication in Saccharomyces cerevisiae. , 1993, Genes & development.
[39] H Yoshikawa,et al. The efficiency and timing of initiation of replication of multiple replicons of Saccharomyces cerevisiae chromosome VI , 1997, Genes to cells : devoted to molecular & cellular mechanisms.
[40] W. L. Fangman,et al. Replication profile of Saccharomyces cerevisiae chromosome VI , 1997, Genes to cells : devoted to molecular & cellular mechanisms.
[41] Y. Benjamini,et al. Controlling the false discovery rate: a practical and powerful approach to multiple testing , 1995 .
[42] P Linder,et al. A new pair of B‐type cyclins from Saccharomyces cerevisiae that function early in the cell cycle. , 1993, The EMBO journal.
[43] P. Philippsen,et al. Additional modules for versatile and economical PCR‐based gene deletion and modification in Saccharomyces cerevisiae , 1998, Yeast.
[44] W. L. Fangman,et al. A yeast origin of replication is activated late in S phase , 1991, Cell.
[45] Zhifeng Shao,et al. DNA combing reveals intrinsic temporal disorder in the replication of yeast chromosome VI. , 2008, Journal of molecular biology.
[46] Oscar M. Aparicio,et al. Diminished S-Phase Cyclin-Dependent Kinase Function Elicits Vital Rad53-Dependent Checkpoint Responses in Saccharomyces cerevisiae , 2004, Molecular and Cellular Biology.
[47] Jonathan Pevsner,et al. SNOMAD (Standardization and NOrmalization of MicroArray Data): web-accessible gene expression data analysis , 2002, Bioinform..