Genome-wide Prediction of Mammalian Enhancers Based on Analysis of Transcription-Factor Binding Affinity

نویسندگان

  • Outi Hallikas
  • Kimmo Palin
  • Natalia Sinjushina
  • Reetta Rautiainen
  • Juha Partanen
  • Esko Ukkonen
  • Jussi Taipale
چکیده

Understanding the regulation of human gene expression requires knowledge of the "second genetic code," which consists of the binding specificities of transcription factors (TFs) and the combinatorial code by which TF binding sites are assembled to form tissue-specific enhancer elements. Using a novel high-throughput method, we determined the DNA binding specificities of GLIs 1-3, Tcf4, and c-Ets1, which mediate transcriptional responses to the Hedgehog (Hh), Wnt, and Ras/MAPK signaling pathways. To identify mammalian enhancer elements regulated by these pathways on a genomic scale, we developed a computational tool, enhancer element locator (EEL). We show that EEL can be used to identify Hh and Wnt target genes and to predict activated TFs based on changes in gene expression. Predictions validated in transgenic mouse embryos revealed the presence of multiple tissue-specific enhancers in mouse c-Myc and N-Myc genes, which has implications for organ-specific growth control and tumor-type specificity of oncogenes.

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Supplemental Data Genome-wide Prediction of Mammalian Enhancers Based on Analysis of Transcription-Factor Binding Affinity

Affinity score is from human to mouse alignment (affinity of the weaker species is shown). Affinity score is from human to mouse alignment (affinity in the weaker species is shown). Affinity score is from human to mouse alignment (affinity of the weaker species is shown). Compare to Table S2 (predictions made using EEL). Predicted enhancer modules with two or more GLI sites in a single predicte...

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عنوان ژورنال:
  • Cell

دوره 124  شماره 

صفحات  -

تاریخ انتشار 2006