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A novel role for Dun1 in the regulation of origin firing upon hyper-acetylation of H3K56
Lihi Gershon,
Martin Kupiec
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Corresponding author for this work
Biotechnology
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Agriculture & Biology
acetylation
100%
histones
89%
protein kinases
29%
loaders
21%
genetic instability
21%
chromatids
18%
DNA replication
16%
moieties
14%
chromatin
13%
cell cycle
13%
phosphotransferases (kinases)
13%
lysine
12%
Saccharomyces cerevisiae
12%
viability
11%
yeasts
10%
cells
9%
Medicine & Life Sciences
Acetylation
97%
Histones
86%
Protein Kinases
34%
Chromatids
23%
Histone Deacetylases
21%
Genomic Instability
20%
DNA Replication
18%
Lysine
18%
Saccharomyces cerevisiae
17%
Chromatin
16%
Yeasts
14%
Cell Cycle
14%
Phosphotransferases
14%
Earth & Environmental Sciences
firing
93%
regulation
64%
cell
57%
protein
44%
genomics
30%
yeast
30%
viability
28%
DNA
25%
program
16%