Literature DB >> 15930495

Discovering functional transcription-factor combinations in the human cell cycle.

Zhou Zhu1, Jay Shendure, George M Church.   

Abstract

With the completion of full genome sequences and advancement in high-throughput technologies, in silico methods have been successfully used to integrate diverse data sources toward unraveling the combinatorial nature of transcriptional regulation. So far, almost all of these studies are restricted to lower eukaryotes such as budding yeast. We describe here a computational search for functional transcription-factor (TF) combinations using phylogenetically conserved sequences and microarray-based expression data. Taking into account both orientational and positional constraints, we investigated the overrepresentation of binding sites in the vicinity of one another and whether these combinations result in more coherent expression profiles. Without any prior biological knowledge, the search led to the discovery of several experimentally established TF associations, as well as some novel ones. In particular, we identified a regulatory module controlling cell cycle-dependent transcription of G2-M genes and expanded its functional generality. We also detected many homotypic combinations, supporting the importance of binding-site density in transcriptional regulation of higher eukaryotes.

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Year:  2005        PMID: 15930495      PMCID: PMC1142475          DOI: 10.1101/gr.3394405

Source DB:  PubMed          Journal:  Genome Res        ISSN: 1088-9051            Impact factor:   9.043


  59 in total

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Journal:  Genome Res       Date:  2001-09       Impact factor: 9.043

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9.  Human-mouse genome comparisons to locate regulatory sites.

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  43 in total

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4.  Statistical significance of combinatorial regulations.

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7.  Predicting eukaryotic transcriptional cooperativity by Bayesian network integration of genome-wide data.

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9.  A protein-protein interaction guided method for competitive transcription factor binding improves target predictions.

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Review 10.  Integrating sequence, evolution and functional genomics in regulatory genomics.

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Journal:  Genome Biol       Date:  2009-01-30       Impact factor: 13.583

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