TY - JOUR
T1 - Cell cycle-dependent nucleosome occupancy at cohesin binding sites in yeast chromosomes
AU - Liu, Jie
AU - Czajkowsky, Daniel M.
AU - Liang, Shoudan
AU - Shao, Zhifeng
N1 - Funding Information:
We thank Kim Nasmyth (University of Oxford, UK) for kindly providing the yeast strain used in this study. We are also indebted to Sitong Sheng and Yan Gao of this laboratory for technical assistance. Microarray data acquisition was performed in the Biomedical Research Facility at the University of Virginia (partially supported by a NIH Cancer Center Grant) with expert assistance from Yongde Bao and Alyson Prorock. This work was supported by grants from the National Institutes of Health to Z.S. (HG003702, GM68729, and HL48807).
PY - 2008/3
Y1 - 2008/3
N2 - In the budding yeast, cohesin is loaded onto the chromosome during the late G1 phase, establishes sister chromatid cohesion concomitant with DNA replication, and dissociates by the telophase. Here, using oligonucleotide tiling arrays, we show that, at the anaphase, nearly all of the cohesin binding sites contain nucleosome-free regions. The majority of these sites remain nucleosome-free throughout the cell cycle, consistent with the suggestion of a DNA-binding anchoring protein present at these sites, although such a region could also serve as part of a marker for the binding of cohesin in the next cell cycle. However, a third of these sites are remodeled in the G1 phase, being reoccupied by nucleosomes by the G1/S boundary, though their subsequent removal in the S phase appears to be independent of DNA replication. Whether this difference is a result of other functions of cohesin or of the chromatin remains to be elucidated.
AB - In the budding yeast, cohesin is loaded onto the chromosome during the late G1 phase, establishes sister chromatid cohesion concomitant with DNA replication, and dissociates by the telophase. Here, using oligonucleotide tiling arrays, we show that, at the anaphase, nearly all of the cohesin binding sites contain nucleosome-free regions. The majority of these sites remain nucleosome-free throughout the cell cycle, consistent with the suggestion of a DNA-binding anchoring protein present at these sites, although such a region could also serve as part of a marker for the binding of cohesin in the next cell cycle. However, a third of these sites are remodeled in the G1 phase, being reoccupied by nucleosomes by the G1/S boundary, though their subsequent removal in the S phase appears to be independent of DNA replication. Whether this difference is a result of other functions of cohesin or of the chromatin remains to be elucidated.
KW - Chromatin
KW - Cohesion
KW - Microarray
KW - Nucleosome
KW - Tiling
KW - Yeast
UR - https://www.scopus.com/pages/publications/39149104967
UR - https://www.scopus.com/pages/publications/39149104967#tab=citedBy
U2 - 10.1016/j.ygeno.2007.11.006
DO - 10.1016/j.ygeno.2007.11.006
M3 - Article
C2 - 18178375
AN - SCOPUS:39149104967
SN - 0888-7543
VL - 91
SP - 274
EP - 280
JO - Genomics
JF - Genomics
IS - 3
ER -