TY - JOUR
T1 - Identification of novel pRb binding sites using CpG microarrays suggests that E2F recruits pRb to specific genomic sites during S phase
AU - Wells, Julie
AU - Yan, Pearlly S.
AU - Cechvala, Meredith
AU - Huang, Tim
AU - Farnham, Peggy J.
N1 - Funding Information:
We thank Sarah Harkins-Perry and Stephanie Bartley for excellent technical assistance, and Dr Dirk Eick for the gift of the Raji cells. We also like to express our thanks to Brad Stewart for sequencing analysis, to the Biotechnology Center for synthesizing all of the primers used in this study and to Kathy Schell, Pam Whitney and Joan Batchelder of the Comprehensive Cancer Center for their expert assistance with flow cytometry analysis. This work was supported in part by Public Health Service grant CA22484 and CA45240 (to PJF), CA1452 (a NCI Cancer Center Core Grant), R33CA84701 (TH–MH), and NIH CA14520-29 (to the Comprehensive Cancer Center).
PY - 2003/3/13
Y1 - 2003/3/13
N2 - The retinoblastoma (Rb) tumor suppressor protein is an important regulator of cell proliferation and differentiation. Many studies have shown that pRb can negatively regulate the activity of the E2F family of transcription factors during G0 and G1 phases of the cell cycle, perhaps by serving as a bridge between the E2Fs and transcriptional repressors such as histone deacetylases and methylases. However, pRb has also been shown to localize to discrete DNA foci during S phase, a time at which pRb is thought to be dissociated from E2F. Numerous other DNA binding proteins have been shown to interact with pRb, suggesting that pRb may control progression through S phase by binding to sites in the genome distinct from E2F target gene promoters. To test this hypothesis, we have identified novel pRb binding sites within the human genome using an unbiased approach which relies upon a combination of chromatin immunoprecipitation and CpG microarray analysis. To provide the greatest opportunity of finding distinct sets of pRb binding sites, we examined pRb binding in chromatin obtained from human Raji cells synchronized in either G0/G1 phase or S phase. These experiments have allowed us to identify a large set of new genomic binding sites for the pRb protein. We found that some sites are occupied by pRb only during G0/G1 phase, as would be predicted from previous models of pRb function. We also identified sites to which pRb bound only during S phase and other sites which were bound constitutively by pRb. Surprisingly, we found that E2F1 was present at most of the CpG islands bound by pRb, independent of the phase of the cell cycle. Thus, although pRb has the potential to interact with numerous transcription factors, our data suggest that the majority of DNA-bound pRb is recruited to E2F target promoters during both G0/G1 and S phases.
AB - The retinoblastoma (Rb) tumor suppressor protein is an important regulator of cell proliferation and differentiation. Many studies have shown that pRb can negatively regulate the activity of the E2F family of transcription factors during G0 and G1 phases of the cell cycle, perhaps by serving as a bridge between the E2Fs and transcriptional repressors such as histone deacetylases and methylases. However, pRb has also been shown to localize to discrete DNA foci during S phase, a time at which pRb is thought to be dissociated from E2F. Numerous other DNA binding proteins have been shown to interact with pRb, suggesting that pRb may control progression through S phase by binding to sites in the genome distinct from E2F target gene promoters. To test this hypothesis, we have identified novel pRb binding sites within the human genome using an unbiased approach which relies upon a combination of chromatin immunoprecipitation and CpG microarray analysis. To provide the greatest opportunity of finding distinct sets of pRb binding sites, we examined pRb binding in chromatin obtained from human Raji cells synchronized in either G0/G1 phase or S phase. These experiments have allowed us to identify a large set of new genomic binding sites for the pRb protein. We found that some sites are occupied by pRb only during G0/G1 phase, as would be predicted from previous models of pRb function. We also identified sites to which pRb bound only during S phase and other sites which were bound constitutively by pRb. Surprisingly, we found that E2F1 was present at most of the CpG islands bound by pRb, independent of the phase of the cell cycle. Thus, although pRb has the potential to interact with numerous transcription factors, our data suggest that the majority of DNA-bound pRb is recruited to E2F target promoters during both G0/G1 and S phases.
KW - Chromatin immunoprecipitation
KW - CpG island
KW - E2F1
KW - pRb
UR - https://www.scopus.com/pages/publications/0037435010
U2 - 10.1038/sj.onc.1206264
DO - 10.1038/sj.onc.1206264
M3 - Article
C2 - 12629508
AN - SCOPUS:0037435010
SN - 0950-9232
VL - 22
SP - 1445
EP - 1460
JO - Oncogene
JF - Oncogene
IS - 10
ER -