Literature DB >> 23562153

Genomic regions flanking E-box binding sites influence DNA binding specificity of bHLH transcription factors through DNA shape.

Raluca Gordân1, Ning Shen, Iris Dror, Tianyin Zhou, John Horton, Remo Rohs, Martha L Bulyk.   

Abstract

DNA sequence is a major determinant of the binding specificity of transcription factors (TFs) for their genomic targets. However, eukaryotic cells often express, at the same time, TFs with highly similar DNA binding motifs but distinct in vivo targets. Currently, it is not well understood how TFs with seemingly identical DNA motifs achieve unique specificities in vivo. Here, we used custom protein-binding microarrays to analyze TF specificity for putative binding sites in their genomic sequence context. Using yeast TFs Cbf1 and Tye7 as our case studies, we found that binding sites of these bHLH TFs (i.e., E-boxes) are bound differently in vitro and in vivo, depending on their genomic context. Computational analyses suggest that nucleotides outside E-box binding sites contribute to specificity by influencing the three-dimensional structure of DNA binding sites. Thus, the local shape of target sites might play a widespread role in achieving regulatory specificity within TF families.
Copyright © 2013 The Authors. Published by Elsevier Inc. All rights reserved.

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Year:  2013        PMID: 23562153      PMCID: PMC3640701          DOI: 10.1016/j.celrep.2013.03.014

Source DB:  PubMed          Journal:  Cell Rep            Impact factor:   9.423


  47 in total

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  147 in total

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Review 7.  Using protein-binding microarrays to study transcription factor specificity: homologs, isoforms and complexes.

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Review 8.  Structure-based modeling of protein: DNA specificity.

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9.  Quantitative modeling of transcription factor binding specificities using DNA shape.

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10.  Coregulation of transcription factor binding and nucleosome occupancy through DNA features of mammalian enhancers.

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