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Promoter sequence and architecture determine expression variability and confer robustness to genetic variants

Genetic and environmental exposures cause variability in gene expression. Although most genes are affected in a population, their effect sizes vary greatly, indicating the existence of regulatory mechanisms that could amplify or attenuate expression variability. Here, we investigate the relationship...

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Autores principales: Einarsson, Hjörleifur, Salvatore, Marco, Vaagensø, Christian, Alcaraz, Nicolas, Bornholdt, Jette, Rennie, Sarah, Andersson, Robin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9844987/
https://www.ncbi.nlm.nih.gov/pubmed/36377861
http://dx.doi.org/10.7554/eLife.80943
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author Einarsson, Hjörleifur
Salvatore, Marco
Vaagensø, Christian
Alcaraz, Nicolas
Bornholdt, Jette
Rennie, Sarah
Andersson, Robin
author_facet Einarsson, Hjörleifur
Salvatore, Marco
Vaagensø, Christian
Alcaraz, Nicolas
Bornholdt, Jette
Rennie, Sarah
Andersson, Robin
author_sort Einarsson, Hjörleifur
collection PubMed
description Genetic and environmental exposures cause variability in gene expression. Although most genes are affected in a population, their effect sizes vary greatly, indicating the existence of regulatory mechanisms that could amplify or attenuate expression variability. Here, we investigate the relationship between the sequence and transcription start site architectures of promoters and their expression variability across human individuals. We find that expression variability can be largely explained by a promoter’s DNA sequence and its binding sites for specific transcription factors. We show that promoter expression variability reflects the biological process of a gene, demonstrating a selective trade-off between stability for metabolic genes and plasticity for responsive genes and those involved in signaling. Promoters with a rigid transcription start site architecture are more prone to have variable expression and to be associated with genetic variants with large effect sizes, while a flexible usage of transcription start sites within a promoter attenuates expression variability and limits genotypic effects. Our work provides insights into the variable nature of responsive genes and reveals a novel mechanism for supplying transcriptional and mutational robustness to essential genes through multiple transcription start site regions within a promoter.
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spelling pubmed-98449872023-01-18 Promoter sequence and architecture determine expression variability and confer robustness to genetic variants Einarsson, Hjörleifur Salvatore, Marco Vaagensø, Christian Alcaraz, Nicolas Bornholdt, Jette Rennie, Sarah Andersson, Robin eLife Chromosomes and Gene Expression Genetic and environmental exposures cause variability in gene expression. Although most genes are affected in a population, their effect sizes vary greatly, indicating the existence of regulatory mechanisms that could amplify or attenuate expression variability. Here, we investigate the relationship between the sequence and transcription start site architectures of promoters and their expression variability across human individuals. We find that expression variability can be largely explained by a promoter’s DNA sequence and its binding sites for specific transcription factors. We show that promoter expression variability reflects the biological process of a gene, demonstrating a selective trade-off between stability for metabolic genes and plasticity for responsive genes and those involved in signaling. Promoters with a rigid transcription start site architecture are more prone to have variable expression and to be associated with genetic variants with large effect sizes, while a flexible usage of transcription start sites within a promoter attenuates expression variability and limits genotypic effects. Our work provides insights into the variable nature of responsive genes and reveals a novel mechanism for supplying transcriptional and mutational robustness to essential genes through multiple transcription start site regions within a promoter. eLife Sciences Publications, Ltd 2022-11-15 /pmc/articles/PMC9844987/ /pubmed/36377861 http://dx.doi.org/10.7554/eLife.80943 Text en © 2022, Einarsson 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 Chromosomes and Gene Expression
Einarsson, Hjörleifur
Salvatore, Marco
Vaagensø, Christian
Alcaraz, Nicolas
Bornholdt, Jette
Rennie, Sarah
Andersson, Robin
Promoter sequence and architecture determine expression variability and confer robustness to genetic variants
title Promoter sequence and architecture determine expression variability and confer robustness to genetic variants
title_full Promoter sequence and architecture determine expression variability and confer robustness to genetic variants
title_fullStr Promoter sequence and architecture determine expression variability and confer robustness to genetic variants
title_full_unstemmed Promoter sequence and architecture determine expression variability and confer robustness to genetic variants
title_short Promoter sequence and architecture determine expression variability and confer robustness to genetic variants
title_sort promoter sequence and architecture determine expression variability and confer robustness to genetic variants
topic Chromosomes and Gene Expression
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9844987/
https://www.ncbi.nlm.nih.gov/pubmed/36377861
http://dx.doi.org/10.7554/eLife.80943
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