A bi-dimensional regression tree approach to the modeling of gene expression regulation
Open Access
- 22 November 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in Bioinformatics
- Vol. 22 (3) , 332-340
- https://doi.org/10.1093/bioinformatics/bti792
Abstract
Motivation: The transcriptional regulation of a gene depends on the binding of cis-regulatory elements on its promoter to some transcription factors and the expression levels of the transcription factors. Most existing approaches to studying transcriptional regulation model these dependencies separately, i.e. either from promoters to gene expression or from the expression levels of transcription factors to the expression levels of genes. Little effort has been devoted to a single model for integrating both dependencies. Results: We propose a novel method to model gene expression using both promoter sequences and the expression levels of putative regulators. The proposed method, called bi-dimensional regression tree (BDTree), extends a multivariate regression tree approach by applying it simultaneously to both genes and conditions of an expression matrix. The method produces hypotheses about the condition-specific binding motifs and regulators for each gene. As a side-product, the method also partitions the expression matrix into small submatrices in a way similar to bi-clustering. We propose and compare several splitting functions for building the tree. When applied to two microarray datasets of the yeast Saccharomyces cerevisiae, BDTree successfully identifies most motifs and regulators that are known to regulate the biological processes underlying the datasets. Comparing with an existing algorithm, BDTree provides a higher prediction accuracy in cross-validations. Availability: The software is available upon request from the authors. Contact:zhang@cse.wustl.edu Supplementary information:Keywords
This publication has 27 references indexed in Scilit:
- Growth-regulated recruitment of the essential yeast ribosomal protein gene activator Ifh1Nature, 2004
- The transcription factor Ifh1 is a key regulator of yeast ribosomal protein genesNature, 2004
- Transcriptional regulatory code of a eukaryotic genomeNature, 2004
- Regression trees for regulatory element identificationBioinformatics, 2004
- Regulation of the Yeast DPP1-encoded Diacylglycerol Pyrophosphate Phosphatase by Transcription Factor Gis1pPublished by Elsevier ,2003
- Module networks: identifying regulatory modules and their condition-specific regulators from gene expression dataNature Genetics, 2003
- Oscillatory nucleocytoplasmic shuttling of the general stress response transcriptional activators Msn2 and Msn4 in Saccharomyces cerevisiae The Journal of cell biology, 2003
- Genome-wide Co-occurrence of Promoter Elements Reveals a cis-Regulatory Cassette of rRNA Transcription Motifs in Saccharomyces cerevisiaeGenome Research, 2002
- Finding DNA regulatory motifs within unaligned noncoding sequences clustered by whole-genome mRNA quantitationNature Biotechnology, 1998
- Tree-Structured Methods for Longitudinal DataJournal of the American Statistical Association, 1992