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Role of GCN2-Independent Signaling Through a Noncanonical PERK/NRF2 Pathway in the Physiological Responses to Dietary Methionine Restriction

Restricting availability of essential amino acids (EAAs) limits aminoacylation of tRNAs by their cognate EAAs and activates the nutrient-sensing kinase, general control nonderepressible 2 (GCN2). Activated GCN2 phosphorylates eukaryotic initiation factor 2 (eIF2), altering gene-specific translation...

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Autores principales: Wanders, Desiree, Stone, Kirsten P., Forney, Laura A., Cortez, Cory C., Dille, Kelly N., Simon, Jacob, Xu, Mark, Hotard, Elisabeth C., Nikonorova, Inna A., Pettit, Ashley P., Anthony, Tracy G., Gettys, Thomas W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4878423/
https://www.ncbi.nlm.nih.gov/pubmed/26936965
http://dx.doi.org/10.2337/db15-1324
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author Wanders, Desiree
Stone, Kirsten P.
Forney, Laura A.
Cortez, Cory C.
Dille, Kelly N.
Simon, Jacob
Xu, Mark
Hotard, Elisabeth C.
Nikonorova, Inna A.
Pettit, Ashley P.
Anthony, Tracy G.
Gettys, Thomas W.
author_facet Wanders, Desiree
Stone, Kirsten P.
Forney, Laura A.
Cortez, Cory C.
Dille, Kelly N.
Simon, Jacob
Xu, Mark
Hotard, Elisabeth C.
Nikonorova, Inna A.
Pettit, Ashley P.
Anthony, Tracy G.
Gettys, Thomas W.
author_sort Wanders, Desiree
collection PubMed
description Restricting availability of essential amino acids (EAAs) limits aminoacylation of tRNAs by their cognate EAAs and activates the nutrient-sensing kinase, general control nonderepressible 2 (GCN2). Activated GCN2 phosphorylates eukaryotic initiation factor 2 (eIF2), altering gene-specific translation and initiating a transcriptional program collectively described as the integrated stress response (ISR). Central GCN2 activation by EAA deprivation is also linked to an acute aversive feeding response. Dietary methionine restriction (MR) produces a well-documented series of physiological responses (increased energy intake and expenditure, decreased adiposity, and increased insulin sensitivity), but the role of GCN2 in mediating them is unknown. Using Gcn2(−/−) mice, we found that the absence of GCN2 had no effect on the ability of MR to reduce body weight or adiposity, increase energy intake and expenditure, increase hepatic transcription and release of fibroblast growth factor 21, or improve insulin sensitivity. Interestingly, hepatic eIF2 phosphorylation by MR was uncompromised in Gcn2(−/−) mice. Instead, protein kinase R–like endoplasmic reticulum (ER) kinase (PERK) was activated in both intact and Gcn2(−/−) mice. PERK activation corresponded with induction of the ISR and the nuclear respiratory factor 2 antioxidant program but not ER stress. These data uncover a novel glutathione-sensing mechanism that functions independently of GCN2 to link dietary MR to its metabolic phenotype.
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spelling pubmed-48784232017-06-01 Role of GCN2-Independent Signaling Through a Noncanonical PERK/NRF2 Pathway in the Physiological Responses to Dietary Methionine Restriction Wanders, Desiree Stone, Kirsten P. Forney, Laura A. Cortez, Cory C. Dille, Kelly N. Simon, Jacob Xu, Mark Hotard, Elisabeth C. Nikonorova, Inna A. Pettit, Ashley P. Anthony, Tracy G. Gettys, Thomas W. Diabetes Metabolism Restricting availability of essential amino acids (EAAs) limits aminoacylation of tRNAs by their cognate EAAs and activates the nutrient-sensing kinase, general control nonderepressible 2 (GCN2). Activated GCN2 phosphorylates eukaryotic initiation factor 2 (eIF2), altering gene-specific translation and initiating a transcriptional program collectively described as the integrated stress response (ISR). Central GCN2 activation by EAA deprivation is also linked to an acute aversive feeding response. Dietary methionine restriction (MR) produces a well-documented series of physiological responses (increased energy intake and expenditure, decreased adiposity, and increased insulin sensitivity), but the role of GCN2 in mediating them is unknown. Using Gcn2(−/−) mice, we found that the absence of GCN2 had no effect on the ability of MR to reduce body weight or adiposity, increase energy intake and expenditure, increase hepatic transcription and release of fibroblast growth factor 21, or improve insulin sensitivity. Interestingly, hepatic eIF2 phosphorylation by MR was uncompromised in Gcn2(−/−) mice. Instead, protein kinase R–like endoplasmic reticulum (ER) kinase (PERK) was activated in both intact and Gcn2(−/−) mice. PERK activation corresponded with induction of the ISR and the nuclear respiratory factor 2 antioxidant program but not ER stress. These data uncover a novel glutathione-sensing mechanism that functions independently of GCN2 to link dietary MR to its metabolic phenotype. American Diabetes Association 2016-06 2016-03-02 /pmc/articles/PMC4878423/ /pubmed/26936965 http://dx.doi.org/10.2337/db15-1324 Text en © 2016 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered.
spellingShingle Metabolism
Wanders, Desiree
Stone, Kirsten P.
Forney, Laura A.
Cortez, Cory C.
Dille, Kelly N.
Simon, Jacob
Xu, Mark
Hotard, Elisabeth C.
Nikonorova, Inna A.
Pettit, Ashley P.
Anthony, Tracy G.
Gettys, Thomas W.
Role of GCN2-Independent Signaling Through a Noncanonical PERK/NRF2 Pathway in the Physiological Responses to Dietary Methionine Restriction
title Role of GCN2-Independent Signaling Through a Noncanonical PERK/NRF2 Pathway in the Physiological Responses to Dietary Methionine Restriction
title_full Role of GCN2-Independent Signaling Through a Noncanonical PERK/NRF2 Pathway in the Physiological Responses to Dietary Methionine Restriction
title_fullStr Role of GCN2-Independent Signaling Through a Noncanonical PERK/NRF2 Pathway in the Physiological Responses to Dietary Methionine Restriction
title_full_unstemmed Role of GCN2-Independent Signaling Through a Noncanonical PERK/NRF2 Pathway in the Physiological Responses to Dietary Methionine Restriction
title_short Role of GCN2-Independent Signaling Through a Noncanonical PERK/NRF2 Pathway in the Physiological Responses to Dietary Methionine Restriction
title_sort role of gcn2-independent signaling through a noncanonical perk/nrf2 pathway in the physiological responses to dietary methionine restriction
topic Metabolism
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4878423/
https://www.ncbi.nlm.nih.gov/pubmed/26936965
http://dx.doi.org/10.2337/db15-1324
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