Literature DB >> 24408913

Ancestral resurrection of the Drosophila S2E enhancer reveals accessible evolutionary paths through compensatory change.

Carlos Martinez1, Joshua S Rest, Ah-Ram Kim, Michael Ludwig, Martin Kreitman, Kevin White, John Reinitz.   

Abstract

Upstream regulatory sequences that control gene expression evolve rapidly, yet the expression patterns and functions of most genes are typically conserved. To address this paradox, we have reconstructed computationally and resurrected in vivo the cis-regulatory regions of the ancestral Drosophila eve stripe 2 element and evaluated its evolution using a mathematical model of promoter function. Our feed-forward transcriptional model predicts gene expression patterns directly from enhancer sequence. We used this functional model along with phylogenetics to generate a set of possible ancestral eve stripe 2 sequences for the common ancestors of 1) D. simulans and D. sechellia; 2) D. melanogaster, D. simulans, and D. sechellia; and 3) D. erecta and D. yakuba. These ancestral sequences were synthesized and resurrected in vivo. Using a combination of quantitative and computational analysis, we find clear support for functional compensation between the binding sites for Bicoid, Giant, and Krüppel over the course of 40-60 My of Drosophila evolution. We show that this compensation is driven by a coupling interaction between Bicoid activation and repression at the anterior and posterior border necessary for proper placement of the anterior stripe 2 border. A multiplicity of mechanisms for binding site turnover exemplified by Bicoid, Giant, and Krüppel sites, explains how rapid sequence change may occur while maintaining the function of the cis-regulatory element.

Entities:  

Keywords:  enhancer; evolution; modeling; transcription

Mesh:

Substances:

Year:  2014        PMID: 24408913      PMCID: PMC3969564          DOI: 10.1093/molbev/msu042

Source DB:  PubMed          Journal:  Mol Biol Evol        ISSN: 0737-4038            Impact factor:   16.240


  67 in total

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  11 in total

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Authors:  Kenneth A Barr; John Reinitz
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2.  Synthetic enhancer design by in silico compensatory evolution reveals flexibility and constraint in cis-regulation.

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3.  Natural variation of the expression pattern of the segmentation gene even-skipped in melanogaster.

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8.  Resurrecting ancestral structural dynamics of an antiviral immune receptor: adaptive binding pocket reorganization repeatedly shifts RNA preference.

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9.  Translating natural genetic variation to gene expression in a computational model of the Drosophila gap gene regulatory network.

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