TY - JOUR T1 - CTCF binding site sequence differences are associated with unique regulatory and functional trends during embryonic stem cell differentiation JF - Nucleic Acids ResNucleic Acids ResNucleic Acids Res Y1 - 2014 A1 - Plasschaert, R. N. A1 - Vigneau, S. A1 - Tempera, I. A1 - Gupta, R. A1 - Maksimoska, J. A1 - Everett, L. A1 - Davuluri, R. A1 - Mamorstein, R. A1 - Lieberman, P. M. A1 - Schultz, D. A1 - Sridhar Hannenhalli A1 - Bartolomei, M. S. KW - *Gene Expression Regulation KW - *Regulatory Elements, Transcriptional KW - Animals KW - Binding Sites KW - Cell Differentiation/*genetics KW - Cells, Cultured KW - Embryonic Stem Cells/cytology/*metabolism KW - Mice KW - Nucleotide Motifs KW - Protein Binding KW - Repressor Proteins/*metabolism AB - CTCF (CCCTC-binding factor) is a highly conserved multifunctional DNA-binding protein with thousands of binding sites genome-wide. Our previous work suggested that differences in CTCF's binding site sequence may affect the regulation of CTCF recruitment and its function. To investigate this possibility, we characterized changes in genome-wide CTCF binding and gene expression during differentiation of mouse embryonic stem cells. After separating CTCF sites into three classes (LowOc, MedOc and HighOc) based on similarity to the consensus motif, we found that developmentally regulated CTCF binding occurs preferentially at LowOc sites, which have lower similarity to the consensus. By measuring the affinity of CTCF for selected sites, we show that sites lost during differentiation are enriched in motifs associated with weaker CTCF binding in vitro. Specifically, enrichment for T at the 18(th) position of the CTCF binding site is associated with regulated binding in the LowOc class and can predictably reduce CTCF affinity for binding sites. Finally, by comparing changes in CTCF binding with changes in gene expression during differentiation, we show that LowOc and HighOc sites are associated with distinct regulatory functions. Our results suggest that the regulatory control of CTCF is dependent in part on specific motifs within its binding site. VL - 42 SN - 1362-4962 (Electronic)
0305-1048 (Linking) N1 - Plasschaert, Robert N
Vigneau, Sebastien
Tempera, Italo
Gupta, Ravi
Maksimoska, Jasna
Everett, Logan
Davuluri, Ramana
Mamorstein, Ronen
Lieberman, Paul M
Schultz, David
Hannenhalli, Sridhar
Bartolomei, Marisa S
eng
K99AI099153/AI/NIAID NIH HHS/
P30 CA10815/CA/NCI NIH HHS/
R01 CA140652/CA/NCI NIH HHS/
R01-GM052880/GM/NIGMS NIH HHS/
R01CA140652/CA/NCI NIH HHS/
R01GM085226/GM/NIGMS NIH HHS/
R01HD042026/HD/NICHD NIH HHS/
T32GM008216/GM/NIGMS NIH HHS/
Research Support, N.I.H., Extramural
Research Support, Non-U.S. Gov't
England
2013/10/15 06:00
Nucleic Acids Res. 2014 Jan;42(2):774-89. doi: 10.1093/nar/gkt910. Epub 2013 Oct 10. U2 - 3902912 J1 - Nucleic acids researchNucleic acids research ER -