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Genome Res. 17:807-817, 2007
©2007 by Cold Spring Harbor Laboratory Press; ISSN 1088-9051/07 $5.00
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Letter

Identification of an OCT4 and SRY regulatory module using integrated computational and experimental genomics approaches

Victor X. Jin1, Henriette O’Geen1, Sushma Iyengar1, Roland Green2, and Peggy J. Farnham1,3

1 Department of Pharmacology and the Genome Center, University of California–Davis, Davis, California 95616, USA; 2 NimbleGen Systems, Inc., Madison, Wisconsin 53711, USA

ChIP-chip studies have revealed that many in vivo binding sites have a weak match to the consensus sequence for the transcription factor being analyzed. Possible explanations for these observations include (1) the in vitro-derived consensus site does not represent the in vivo binding site and/or (2) the factor is recruited to a weak binding site via interaction with another protein. To address these possibilities, we developed an approach (ChIPMotifs) that incorporates a bootstrap resampling method to statistically infer the optimal cutoff threshold for a position weight matrix (PWM) of a motif identified from ChIP-chip data by ab initio motif discovery programs. Using OCT4 ChIP-chip data and the ChIPMotifs approach, we first developed a refined OCT4 PWM. We then used the refined PWM and a ChIPModules approach to identify transcription factors colocalizing with OCT4 in Ntera2 testicular embryonal carcinoma cells. We found that the consensus binding site for SRY, a transcription factor critical for testis development, colocalizes with the OCT4 PWM. To further characterize the relationship between OCT4 and SRY, we performed ChIP-chip experiments with human promoter microarrays, and found that 49% of the top ~1000 OCT4 target promoters were also bound by SRY. This analysis represents the first identification of SRY target promoters. Interestingly, we determined that promoters bound by OCT4 and SRY, but not those bound by SRY alone, were also bound by the transcriptional repressor KAP1. Our studies not only validate the ChIPMotifs and ChIPModules combinatorial approach but also identify a possible new regulatory partner of OCT4.


3 Corresponding author.

E-mail pjfarnham{at}ucdavis.edu; fax (530) 754-9658.

[Supplemental material is available online at www.genome.org. The OCT4, SRY, and KAP1 ChIP-chip data has been deposited in GSE6409.]

Article is online at http://www.genome.org/cgi/doi/10.1101/gr.6006107


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