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A pair of RNA binding proteins inhibit ion transporter expression to maintain lifespan

Regulation of lifespan by transcription factors has been well established. More recently a role for RNA binding proteins (RBPs) in regulating lifespan has also emerged. In both cases, a major challenge is to determine which regulatory targets are functionally responsible for the observed lifespan ph...

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Autores principales: Napier-Jameson, Rebekah, Marx, Olivia, Norris, Adam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10197639/
https://www.ncbi.nlm.nih.gov/pubmed/37214828
http://dx.doi.org/10.1101/2023.05.10.540279
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author Napier-Jameson, Rebekah
Marx, Olivia
Norris, Adam
author_facet Napier-Jameson, Rebekah
Marx, Olivia
Norris, Adam
author_sort Napier-Jameson, Rebekah
collection PubMed
description Regulation of lifespan by transcription factors has been well established. More recently a role for RNA binding proteins (RBPs) in regulating lifespan has also emerged. In both cases, a major challenge is to determine which regulatory targets are functionally responsible for the observed lifespan phenotype. We recently identified a pair of RBPs, exc-7/ELAVL and mbl-1/Muscleblind, which display synthetic (non-additive) lifespan defects: single mutants do not affect lifespan, but exc-7; mbl-1 double mutants have strongly reduced lifespan. Such a strong synthetic phenotype represented an opportunity to use transcriptomics to search for potential causative targets that are synthetically regulated. Focus on such genes would allow us to narrow our target search by ignoring the hundreds of genes altered only in single mutants, and provide a shortlist of synthetically-regulated candidate targets that might be responsible for the double mutant phenotype. We identified a small handful of genes synthetically dysregulated in double mutants and systematically tested each candidate gene for functional contribution to the exc-7; mbl-1 lifespan phenotype. We identified one such gene, the ion transporter nhx-6, which is highly upregulated in double mutants. Overexpression of nhx-6 causes reduced lifespan, and deletion of nhx-6 in an exc-7; mbl-1 background partially restores both lifespan and healthspan. Together, these results reveal that a pair of RBPs mediate lifespan in part by inhibiting expression of an ion transporter, and provide a template for how synthetic phenotypes (including lifespan) can be dissected at the transcriptomic level to reveal potential causative genes.
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spelling pubmed-101976392023-05-20 A pair of RNA binding proteins inhibit ion transporter expression to maintain lifespan Napier-Jameson, Rebekah Marx, Olivia Norris, Adam bioRxiv Article Regulation of lifespan by transcription factors has been well established. More recently a role for RNA binding proteins (RBPs) in regulating lifespan has also emerged. In both cases, a major challenge is to determine which regulatory targets are functionally responsible for the observed lifespan phenotype. We recently identified a pair of RBPs, exc-7/ELAVL and mbl-1/Muscleblind, which display synthetic (non-additive) lifespan defects: single mutants do not affect lifespan, but exc-7; mbl-1 double mutants have strongly reduced lifespan. Such a strong synthetic phenotype represented an opportunity to use transcriptomics to search for potential causative targets that are synthetically regulated. Focus on such genes would allow us to narrow our target search by ignoring the hundreds of genes altered only in single mutants, and provide a shortlist of synthetically-regulated candidate targets that might be responsible for the double mutant phenotype. We identified a small handful of genes synthetically dysregulated in double mutants and systematically tested each candidate gene for functional contribution to the exc-7; mbl-1 lifespan phenotype. We identified one such gene, the ion transporter nhx-6, which is highly upregulated in double mutants. Overexpression of nhx-6 causes reduced lifespan, and deletion of nhx-6 in an exc-7; mbl-1 background partially restores both lifespan and healthspan. Together, these results reveal that a pair of RBPs mediate lifespan in part by inhibiting expression of an ion transporter, and provide a template for how synthetic phenotypes (including lifespan) can be dissected at the transcriptomic level to reveal potential causative genes. Cold Spring Harbor Laboratory 2023-06-23 /pmc/articles/PMC10197639/ /pubmed/37214828 http://dx.doi.org/10.1101/2023.05.10.540279 Text en https://creativecommons.org/licenses/by-nd/4.0/This work is licensed under a Creative Commons Attribution-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, and only so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Napier-Jameson, Rebekah
Marx, Olivia
Norris, Adam
A pair of RNA binding proteins inhibit ion transporter expression to maintain lifespan
title A pair of RNA binding proteins inhibit ion transporter expression to maintain lifespan
title_full A pair of RNA binding proteins inhibit ion transporter expression to maintain lifespan
title_fullStr A pair of RNA binding proteins inhibit ion transporter expression to maintain lifespan
title_full_unstemmed A pair of RNA binding proteins inhibit ion transporter expression to maintain lifespan
title_short A pair of RNA binding proteins inhibit ion transporter expression to maintain lifespan
title_sort pair of rna binding proteins inhibit ion transporter expression to maintain lifespan
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10197639/
https://www.ncbi.nlm.nih.gov/pubmed/37214828
http://dx.doi.org/10.1101/2023.05.10.540279
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