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Systemic Proteome Phenotypes Reveal Defective Metabolic Flexibility in Mecp2 Mutants

Genes mutated in monogenic neurodevelopmental disorders are broadly expressed. This observation supports the concept that monogenic neurodevelopmental disorders are systemic diseases that profoundly impact neurodevelopment. We tested the systemic disease model focusing on Rett syndrome, which is cau...

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Autores principales: Zlatic, Stephanie A., Werner, Erica, Surapaneni, Veda, Lee, Chelsea E., Gokhale, Avanti, Singleton, Kaela, Duong, Duc, Crocker, Amanda, Gentile, Karen, Middleton, Frank, Dalloul, Joseph Martin, Liu, William Li-Yun, Patgiri, Anupam, Tarquinio, Daniel, Carpenter, Randall, Faundez, Victor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10103972/
https://www.ncbi.nlm.nih.gov/pubmed/37066332
http://dx.doi.org/10.1101/2023.04.03.535431
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author Zlatic, Stephanie A.
Werner, Erica
Surapaneni, Veda
Lee, Chelsea E.
Gokhale, Avanti
Singleton, Kaela
Duong, Duc
Crocker, Amanda
Gentile, Karen
Middleton, Frank
Dalloul, Joseph Martin
Liu, William Li-Yun
Patgiri, Anupam
Tarquinio, Daniel
Carpenter, Randall
Faundez, Victor
author_facet Zlatic, Stephanie A.
Werner, Erica
Surapaneni, Veda
Lee, Chelsea E.
Gokhale, Avanti
Singleton, Kaela
Duong, Duc
Crocker, Amanda
Gentile, Karen
Middleton, Frank
Dalloul, Joseph Martin
Liu, William Li-Yun
Patgiri, Anupam
Tarquinio, Daniel
Carpenter, Randall
Faundez, Victor
author_sort Zlatic, Stephanie A.
collection PubMed
description Genes mutated in monogenic neurodevelopmental disorders are broadly expressed. This observation supports the concept that monogenic neurodevelopmental disorders are systemic diseases that profoundly impact neurodevelopment. We tested the systemic disease model focusing on Rett syndrome, which is caused by mutations in MECP2. Transcriptomes and proteomes of organs and brain regions from Mecp2-null mice as well as diverse MECP2-null male and female human cells were assessed. Widespread changes in the steady-state transcriptome and proteome were identified in brain regions and organs of presymptomatic Mecp2-null male mice as well as mutant human cell lines. The extent of these transcriptome and proteome modifications was similar in cortex, liver, kidney, and skeletal muscle and more pronounced than in the hippocampus and striatum. In particular, Mecp2- and MECP2-sensitive proteomes were enriched in synaptic and metabolic annotated gene products, the latter encompassing lipid metabolism and mitochondrial pathways. MECP2 mutations altered pyruvate-dependent mitochondrial respiration while maintaining the capacity to use glutamine as a mitochondrial carbon source. We conclude that mutations in Mecp2/MECP2 perturb lipid and mitochondrial metabolism systemically limiting cellular flexibility to utilize mitochondrial fuels.
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spelling pubmed-101039722023-04-15 Systemic Proteome Phenotypes Reveal Defective Metabolic Flexibility in Mecp2 Mutants Zlatic, Stephanie A. Werner, Erica Surapaneni, Veda Lee, Chelsea E. Gokhale, Avanti Singleton, Kaela Duong, Duc Crocker, Amanda Gentile, Karen Middleton, Frank Dalloul, Joseph Martin Liu, William Li-Yun Patgiri, Anupam Tarquinio, Daniel Carpenter, Randall Faundez, Victor bioRxiv Article Genes mutated in monogenic neurodevelopmental disorders are broadly expressed. This observation supports the concept that monogenic neurodevelopmental disorders are systemic diseases that profoundly impact neurodevelopment. We tested the systemic disease model focusing on Rett syndrome, which is caused by mutations in MECP2. Transcriptomes and proteomes of organs and brain regions from Mecp2-null mice as well as diverse MECP2-null male and female human cells were assessed. Widespread changes in the steady-state transcriptome and proteome were identified in brain regions and organs of presymptomatic Mecp2-null male mice as well as mutant human cell lines. The extent of these transcriptome and proteome modifications was similar in cortex, liver, kidney, and skeletal muscle and more pronounced than in the hippocampus and striatum. In particular, Mecp2- and MECP2-sensitive proteomes were enriched in synaptic and metabolic annotated gene products, the latter encompassing lipid metabolism and mitochondrial pathways. MECP2 mutations altered pyruvate-dependent mitochondrial respiration while maintaining the capacity to use glutamine as a mitochondrial carbon source. We conclude that mutations in Mecp2/MECP2 perturb lipid and mitochondrial metabolism systemically limiting cellular flexibility to utilize mitochondrial fuels. Cold Spring Harbor Laboratory 2023-09-01 /pmc/articles/PMC10103972/ /pubmed/37066332 http://dx.doi.org/10.1101/2023.04.03.535431 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
Zlatic, Stephanie A.
Werner, Erica
Surapaneni, Veda
Lee, Chelsea E.
Gokhale, Avanti
Singleton, Kaela
Duong, Duc
Crocker, Amanda
Gentile, Karen
Middleton, Frank
Dalloul, Joseph Martin
Liu, William Li-Yun
Patgiri, Anupam
Tarquinio, Daniel
Carpenter, Randall
Faundez, Victor
Systemic Proteome Phenotypes Reveal Defective Metabolic Flexibility in Mecp2 Mutants
title Systemic Proteome Phenotypes Reveal Defective Metabolic Flexibility in Mecp2 Mutants
title_full Systemic Proteome Phenotypes Reveal Defective Metabolic Flexibility in Mecp2 Mutants
title_fullStr Systemic Proteome Phenotypes Reveal Defective Metabolic Flexibility in Mecp2 Mutants
title_full_unstemmed Systemic Proteome Phenotypes Reveal Defective Metabolic Flexibility in Mecp2 Mutants
title_short Systemic Proteome Phenotypes Reveal Defective Metabolic Flexibility in Mecp2 Mutants
title_sort systemic proteome phenotypes reveal defective metabolic flexibility in mecp2 mutants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10103972/
https://www.ncbi.nlm.nih.gov/pubmed/37066332
http://dx.doi.org/10.1101/2023.04.03.535431
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