ArticlePLoS computational biology2011
Towards an evolutionary model of transcription networks.
Article in PLoS computational biology, 2011. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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Who cites it
7 citing papers in PubMed.
- A likelihood approach to testing hypotheses on the co-evolution of epigenome and genome.PLoS computational biology · 2018Article
- Chromatin module inference on cellular trajectories identifies key transition points and poised epigenetic states in diverse developmental processes.Genome research · 2017Article
- Inference and Evolutionary Analysis of Genome-Scale Regulatory Networks in Large Phylogenies.Cell systems · 2017Article
- Article
- Model-based analysis of an adaptive evolution experiment with Escherichia coli in a pyruvate limited continuous culture with glycerol.EURASIP journal on bioinformatics & systems biology · 2012Article
- Functional primate genomics--leveraging the medical potential.Journal of molecular medicine (Berlin, Germany) · 2012Review
- Comparative epigenomics: defining and utilizing epigenomic variations across species, time-course, and individuals.Wiley interdisciplinary reviews. Systems biology and medicineReview
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Authors and funding
5 authors.
Funding
Abstract
DNA evolution models made invaluable contributions to comparative genomics, although it seemed formidable to include non-genomic features into these models. In order to build an evolutionary model of transcription networks (TNs), we had to forfeit the substitution model used in DNA evolution and to start from modeling the evolution of the regulatory relationships. We present a quantitative evolutionary model of TNs, subjecting the phylogenetic distance and the evolutionary changes of cis-regulatory sequence, gene expression and network structure to one probabilistic framework. Using the genome sequences and gene expression data from multiple species, this model can predict regulatory relationships between a transcription factor (TF) and its target genes in all species, and thus identify TN re-wiring events. Applying this model to analyze the pre-implantation development of three mammalian species, we identified the conserved and re-wired components of the TNs downstream to a set of TFs including Oct4, Gata3/4/6, cMyc and nMyc. Evolutionary events on the DNA sequence that led to turnover of TF binding sites were identified, including a birth of an Oct4 binding site by a 2nt deletion. In contrast to recent reports of large interspecies differences of TF binding sites and gene expression patterns, the interspecies difference in TF-target relationship is much smaller. The data showed increasing conservation levels from genomic sequences to TF-DNA interaction, gene expression, TN, and finally to morphology, suggesting that evolutionary changes are larger at molecular levels and smaller at functional levels. The data also showed that evolutionarily older TFs are more likely to have conserved target genes, whereas younger TFs tend to have larger re-wiring rates.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.