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How enhancers regulate wavelike gene expression patterns

A key problem in development is to understand how genes turn on or off at the right place and right time during embryogenesis. Such decisions are made by non-coding sequences called ‘enhancers.’ Much of our models of how enhancers work rely on the assumption that genes are activated de novo as stabl...

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Autores principales: Mau, Christine, Rudolf, Heike, Strobl, Frederic, Schmid, Benjamin, Regensburger, Timo, Palmisano, Ralf, Stelzer, Ernst HK, Taher, Leila, El-Sherif, Ezzat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10368423/
https://www.ncbi.nlm.nih.gov/pubmed/37432987
http://dx.doi.org/10.7554/eLife.84969
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author Mau, Christine
Rudolf, Heike
Strobl, Frederic
Schmid, Benjamin
Regensburger, Timo
Palmisano, Ralf
Stelzer, Ernst HK
Taher, Leila
El-Sherif, Ezzat
author_facet Mau, Christine
Rudolf, Heike
Strobl, Frederic
Schmid, Benjamin
Regensburger, Timo
Palmisano, Ralf
Stelzer, Ernst HK
Taher, Leila
El-Sherif, Ezzat
author_sort Mau, Christine
collection PubMed
description A key problem in development is to understand how genes turn on or off at the right place and right time during embryogenesis. Such decisions are made by non-coding sequences called ‘enhancers.’ Much of our models of how enhancers work rely on the assumption that genes are activated de novo as stable domains across embryonic tissues. Such a view has been strengthened by the intensive landmark studies of the early patterning of the anterior-posterior (AP) axis of the Drosophila embryo, where indeed gene expression domains seem to arise more or less stably. However, careful analysis of gene expression patterns in other model systems (including the AP patterning in vertebrates and short-germ insects like the beetle Tribolium castaneum) painted a different, very dynamic view of gene regulation, where genes are oftentimes expressed in a wavelike fashion. How such gene expression waves are mediated at the enhancer level is so far unclear. Here, we establish the AP patterning of the short-germ beetle Tribolium as a model system to study dynamic and temporal pattern formation at the enhancer level. To that end, we established an enhancer prediction system in Tribolium based on time- and tissue-specific ATAC-seq and an enhancer live reporter system based on MS2 tagging. Using this experimental framework, we discovered several Tribolium enhancers, and assessed the spatiotemporal activities of some of them in live embryos. We found our data consistent with a model in which the timing of gene expression during embryonic pattern formation is mediated by a balancing act between enhancers that induce rapid changes in gene expression patterns (that we call ‘dynamic enhancers’) and enhancers that stabilize gene expression patterns (that we call ‘static enhancers’). However, more data is needed for a strong support for this or any other alternative models.
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spelling pubmed-103684232023-07-26 How enhancers regulate wavelike gene expression patterns Mau, Christine Rudolf, Heike Strobl, Frederic Schmid, Benjamin Regensburger, Timo Palmisano, Ralf Stelzer, Ernst HK Taher, Leila El-Sherif, Ezzat eLife Computational and Systems Biology A key problem in development is to understand how genes turn on or off at the right place and right time during embryogenesis. Such decisions are made by non-coding sequences called ‘enhancers.’ Much of our models of how enhancers work rely on the assumption that genes are activated de novo as stable domains across embryonic tissues. Such a view has been strengthened by the intensive landmark studies of the early patterning of the anterior-posterior (AP) axis of the Drosophila embryo, where indeed gene expression domains seem to arise more or less stably. However, careful analysis of gene expression patterns in other model systems (including the AP patterning in vertebrates and short-germ insects like the beetle Tribolium castaneum) painted a different, very dynamic view of gene regulation, where genes are oftentimes expressed in a wavelike fashion. How such gene expression waves are mediated at the enhancer level is so far unclear. Here, we establish the AP patterning of the short-germ beetle Tribolium as a model system to study dynamic and temporal pattern formation at the enhancer level. To that end, we established an enhancer prediction system in Tribolium based on time- and tissue-specific ATAC-seq and an enhancer live reporter system based on MS2 tagging. Using this experimental framework, we discovered several Tribolium enhancers, and assessed the spatiotemporal activities of some of them in live embryos. We found our data consistent with a model in which the timing of gene expression during embryonic pattern formation is mediated by a balancing act between enhancers that induce rapid changes in gene expression patterns (that we call ‘dynamic enhancers’) and enhancers that stabilize gene expression patterns (that we call ‘static enhancers’). However, more data is needed for a strong support for this or any other alternative models. eLife Sciences Publications, Ltd 2023-07-11 /pmc/articles/PMC10368423/ /pubmed/37432987 http://dx.doi.org/10.7554/eLife.84969 Text en © 2023, Mau et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Computational and Systems Biology
Mau, Christine
Rudolf, Heike
Strobl, Frederic
Schmid, Benjamin
Regensburger, Timo
Palmisano, Ralf
Stelzer, Ernst HK
Taher, Leila
El-Sherif, Ezzat
How enhancers regulate wavelike gene expression patterns
title How enhancers regulate wavelike gene expression patterns
title_full How enhancers regulate wavelike gene expression patterns
title_fullStr How enhancers regulate wavelike gene expression patterns
title_full_unstemmed How enhancers regulate wavelike gene expression patterns
title_short How enhancers regulate wavelike gene expression patterns
title_sort how enhancers regulate wavelike gene expression patterns
topic Computational and Systems Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10368423/
https://www.ncbi.nlm.nih.gov/pubmed/37432987
http://dx.doi.org/10.7554/eLife.84969
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