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1977, Comprehensive virology, ISBN 0306351471, Volume 7., xii, 300
Book
1974, ISBN 0306351439, Volume 3., xiv, 488
Book
2001, ISBN 9780300085402, xii, 503
In 1957 two young scientists, Matthew Meselson and Frank Stahl, produced a landmark experiment confirming that DNA replicates as predicted by the double helix... 
DNA replication | Meselson, Matthew | Stahl, Franklin W | Molecular biology | History | Experiments
Book
Journal of Virology, ISSN 0022-538X, 06/2004, Volume 78, Issue 11, pp. 5591 - 5600
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Journal Article
1988, Current topics in microbiology and immunology, ISBN 0387185135, Volume 136, 90
Book
1992, 2nd ed., ISBN 9780716720034, xiv, 931
Book
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 10/2008, Volume 105, Issue 41, pp. 15837 - 15842
Journal Article
Journal Article
Journal of Virology, ISSN 0022-538X, 10/2002, Volume 76, Issue 20, pp. 10374 - 10382
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Journal Article
1980, ISBN 0716711028, x, 724
Book
Nucleic Acids Research, ISSN 0305-1048, 11/2012, Volume 40, Issue 21, pp. 10780 - 10794
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 10/2010, Volume 107, Issue 41, pp. 17674 - 17679
To investigate DNA replication enzymology across the nuclear genome of budding yeast, deep sequencing was used to establish the pattern of uncorrected... 
Replication origin | Yeasts | DNA replication | Diploidy | DNA | Genomics | Genomes | Genetic mutation | Chromosomes | DNA mismatch repair | DNA polymerase δ | Mutational hotspot | Replication fidelity | Mutator | Lagging strand replication | DATABASE | mutational hotspot | lagging strand replication | replication fidelity | MULTIDISCIPLINARY SCIENCES | MISMATCH REPAIR | mutator | SACCHAROMYCES-CEREVISIAE | CANCER | DNA polymerase delta | DNA Polymerase III - genetics | Gene Library | Saccharomyces cerevisiae - genetics | Molecular Sequence Data | Mutation - genetics | Sequence Analysis, DNA | Base Pair Mismatch - genetics | Replication Origin - genetics | Sequence Alignment | DNA Replication - physiology | Genome, Fungal - genetics | Base Sequence | DNA Replication - genetics | Polymorphism, Single Nucleotide - genetics | Models, Genetic | DNA polymerases | Research | Properties | Enzymes | Eukaryotes | Yeast | DNA polymerase | Deoxyribonucleic acid--DNA | Index Medicus | Phosphorylation | Helper cells | Interleukin 12 | Stat4 protein | mismatch repair | Lymphocytes T | Macrophages | Promoters | Interleukin 18 | Replication forks | DNA biosynthesis | Infection | Replication origins | Histones | gamma -Interferon | Replication | Ankyrin | Models | Natural killer cells | DNA-directed DNA polymerase | DNA sequencing | Biological Sciences
Journal Article
EMBO reports, ISSN 1469-221X, 09/2018, Volume 19, Issue 9, pp. e46222 - n/a
Despite its evolutionarily conserved function in controlling DNA replication, the chromosomal binding sites of the budding yeast Rif1 protein are not well... 
centromere | Rif1 | Ch | DNA | IP | replication origin | Seq | nascent | nascent DNA | DNA replication origin | ChIP-Seq | STABILITY | BIOCHEMISTRY & MOLECULAR BIOLOGY | TRANSCRIPTION | TIMING PROGRAM | SACCHAROMYCES-CEREVISIAE | GENOME | CELL BIOLOGY | REPAIR | PHOSPHATASE 1 | CELL-CYCLE | END RESECTION | TELOMERE LENGTH | Saccharomyces cerevisiae - genetics | Minichromosome Maintenance Proteins - metabolism | Centromere - metabolism | DNA Replication Timing - physiology | Saccharomyces cerevisiae - metabolism | Telomere-Binding Proteins - genetics | Binding Sites - physiology | Telomere - metabolism | Telomere-Binding Proteins - metabolism | Protein-Serine-Threonine Kinases - metabolism | Repressor Proteins - metabolism | Repressor Proteins - chemistry | Cell Cycle Proteins - metabolism | Repressor Proteins - genetics | DNA - metabolism | Saccharomyces cerevisiae Proteins - genetics | Transcription Factors - metabolism | Protein Phosphatase 1 - metabolism | Cell Cycle | Chromosomes, Plant - chemistry | DNA Replication - physiology | Replication Origin - physiology | Saccharomyces cerevisiae Proteins - metabolism | S Phase - physiology | Telomere-Binding Proteins - chemistry | Mutation | Saccharomyces cerevisiae Proteins - chemistry | Biodegradation | Origins | Chromatin | Yeast | Immunoprecipitation | Replication initiation | Centromeres | Labelling | Hydroxyurea | Genomes | Replication forks | DNA biosynthesis | Degradation | Proteins | Rap1 protein | Telomeres | Replication origins | S phase | Replication | Binding sites | Deoxyribonucleic acid--DNA | G1 phase | Index Medicus | DNA Replication, Repair & Recombination | ChIP‐Seq
Journal Article
1996, Cold Spring Harbor monograph series, ISBN 0879694599, Volume 31, xiii, 1058
Book
1991, In focus, ISBN 9780199632169, ix, 86
Book
2016, First edition., ISBN 9780128047354
Web Resource
Journal of Virology, ISSN 0022-538X, 2001, Volume 75, Issue 20, pp. 9885 - 9895
The highly conserved coadapters CREB binding protein (CBP) and p300 form complexes with CREB as well as other DNA binding transcription factors to modulate... 
Journal Article
Journal of Virology, ISSN 0022-538X, 11/2001, Volume 75, Issue 22, pp. 10979 - 10990
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Journal Article
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