TY - JOUR
T1 - CTCF interacts with and recruits the largest subunit of RNA polymerase II to CTCF target sites genome-wide
AU - Chernukhin, Igor
AU - Shamsuddin, Shaharum
AU - Kang, Sung Yun
AU - Bergström, Rosita
AU - Kwon, Yoo Wook
AU - Yu, WenQiang
AU - Whitehead, Joanne
AU - Mukhopadhyay, Rituparna
AU - Docquier, France
AU - Farrar, Dawn
AU - Morrison, Ian
AU - Vigneron, Marc
AU - Wu, Shwu Yuan
AU - Chiang, Cheng Ming
AU - Loukinov, Dmitri
AU - Lobanenkov, Victor
AU - Ohlsson, Rolf
AU - Klenova, Elena
PY - 2007/3
Y1 - 2007/3
N2 - CTCF is a transcription factor with highly versatile functions ranging from gene activation and repression to the regulation of insulator function and imprinting. Although many of these functions rely on CTCF-DNA interactions, it is an emerging realization that CTCF-dependent molecular processes involve CTCF interactions with other proteins. In this study, we report the association of a subpopulation of CTCF with the RNA polymerase II (Pol II) protein complex. We identified the largest subunit of Pol II (LS Pol II) as a protein significantly colocalizing with CTCF in the nucleus and specifically interacting with CTCF in vivo and in vitro. The role of CTCF as a link between DNA and LS Pol II has been reinforced by the observation that the association of LS Pol II with CTCF target sites in vivo depends on intact CTCF binding sequences. "Serial" chromatin immunoprecipitation (ChIP) analysis revealed that both CTCF and LS Pol II were present at the β-globin insulator in proliferating HD3 cells but not in differentiated globin synthesizing HD3 cells. Further, a single wild-type CTCF target site (N-Myc-CTCF), but not the mutant site deficient for CTCF binding, was sufficient to activate the transcription from the promoterless reporter gene in stably transfected cells. Finally, a ChIP-on-ChIP hybridization assay using microarrays of a library of CTCF target sites revealed that many intergenic CTCF target sequences interacted with both CTCF and LS Pol II. We discuss the possible implications of our observations with respect to plausible mechanisms of transcriptional regulation via a CTCF-mediated direct link of LS Pol II to the DNA.
AB - CTCF is a transcription factor with highly versatile functions ranging from gene activation and repression to the regulation of insulator function and imprinting. Although many of these functions rely on CTCF-DNA interactions, it is an emerging realization that CTCF-dependent molecular processes involve CTCF interactions with other proteins. In this study, we report the association of a subpopulation of CTCF with the RNA polymerase II (Pol II) protein complex. We identified the largest subunit of Pol II (LS Pol II) as a protein significantly colocalizing with CTCF in the nucleus and specifically interacting with CTCF in vivo and in vitro. The role of CTCF as a link between DNA and LS Pol II has been reinforced by the observation that the association of LS Pol II with CTCF target sites in vivo depends on intact CTCF binding sequences. "Serial" chromatin immunoprecipitation (ChIP) analysis revealed that both CTCF and LS Pol II were present at the β-globin insulator in proliferating HD3 cells but not in differentiated globin synthesizing HD3 cells. Further, a single wild-type CTCF target site (N-Myc-CTCF), but not the mutant site deficient for CTCF binding, was sufficient to activate the transcription from the promoterless reporter gene in stably transfected cells. Finally, a ChIP-on-ChIP hybridization assay using microarrays of a library of CTCF target sites revealed that many intergenic CTCF target sequences interacted with both CTCF and LS Pol II. We discuss the possible implications of our observations with respect to plausible mechanisms of transcriptional regulation via a CTCF-mediated direct link of LS Pol II to the DNA.
UR - http://www.scopus.com/inward/record.url?scp=33847200412&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=33847200412&partnerID=8YFLogxK
U2 - 10.1128/MCB.01993-06
DO - 10.1128/MCB.01993-06
M3 - Article
C2 - 17210645
AN - SCOPUS:33847200412
SN - 0270-7306
VL - 27
SP - 1631
EP - 1648
JO - Molecular and Cellular Biology
JF - Molecular and Cellular Biology
IS - 5
ER -