Author:
Kedmi Adi,Zehavi Yonathan,Glick Yair,Orenstein Yaron,Ideses Diana,Wachtel Chaim,Doniger Tirza,Waldman Ben-Asher Hiba,Muster Nemone,Thompson James,Anderson Scott,Avrahami Dorit,Yates John R.,Shamir Ron,Gerber Doron,Juven-Gershon Tamar
Abstract
Transcription of protein-coding genes is highly dependent on the RNA polymerase II core promoter. Core promoters, generally defined as the regions that direct transcription initiation, consist of functional core promoter motifs (such as the TATA-box, initiator [Inr], and downstream core promoter element [DPE]) that confer specific properties to the core promoter. The known basal transcription factors that support TATA-dependent transcription are insufficient for in vitro transcription of DPE-dependent promoters. In search of a transcription factor that supports DPE-dependent transcription, we used a biochemical complementation approach and identified the Drosophila TBP (TATA-box-binding protein)-related factor 2 (TRF2) as an enriched factor in the fractions that support DPE-dependent transcription. We demonstrate that the short TRF2 isoform preferentially activates DPE-dependent promoters. DNA microarray analysis reveals the enrichment of DPE promoters among short TRF2 up-regulated genes. Using primer extension analysis and reporter assays, we show the importance of the DPE in transcriptional regulation of TRF2 target genes. It was previously shown that, unlike TBP, TRF2 fails to bind DNA containing TATA-boxes. Using microfluidic affinity analysis, we discovered that short TRF2-bound DNA oligos are enriched for Inr and DPE motifs. Taken together, our findings highlight the role of short TRF2 as a preferential core promoter regulator.
Funder
Israel Science Foundation
European Union Seventh Framework Programme
National Institutes of Health
Publisher
Cold Spring Harbor Laboratory
Subject
Developmental Biology,Genetics
Cited by
45 articles.
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