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Small molecule ISRIB suppresses the integrated stress response within a defined window of activation

Activation of the integrated stress response (ISR) by a variety of stresses triggers phosphorylation of the α-subunit of translation initiation factor eIF2. P-eIF2α inhibits eIF2B, the guanine nucleotide exchange factor that recycles inactive eIF2•GDP to active eIF2•GTP. eIF2 phosphorylation thereby...

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Detalles Bibliográficos
Autores principales: Rabouw, Huib H., Langereis, Martijn A., Anand, Aditya A., Visser, Linda J., de Groot, Raoul J., Walter, Peter, van Kuppeveld, Frank J. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6369741/
https://www.ncbi.nlm.nih.gov/pubmed/30674674
http://dx.doi.org/10.1073/pnas.1815767116
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author Rabouw, Huib H.
Langereis, Martijn A.
Anand, Aditya A.
Visser, Linda J.
de Groot, Raoul J.
Walter, Peter
van Kuppeveld, Frank J. M.
author_facet Rabouw, Huib H.
Langereis, Martijn A.
Anand, Aditya A.
Visser, Linda J.
de Groot, Raoul J.
Walter, Peter
van Kuppeveld, Frank J. M.
author_sort Rabouw, Huib H.
collection PubMed
description Activation of the integrated stress response (ISR) by a variety of stresses triggers phosphorylation of the α-subunit of translation initiation factor eIF2. P-eIF2α inhibits eIF2B, the guanine nucleotide exchange factor that recycles inactive eIF2•GDP to active eIF2•GTP. eIF2 phosphorylation thereby represses translation. Persistent activation of the ISR has been linked to the development of several neurological disorders, and modulation of the ISR promises new therapeutic strategies. Recently, a small-molecule ISR inhibitor (ISRIB) was identified that rescues translation in the presence of P-eIF2α by facilitating the assembly of more active eIF2B. ISRIB enhances cognitive memory processes and has therapeutic effects in brain-injured mice without displaying overt side effects. While using ISRIB to investigate the ISR in picornavirus-infected cells, we observed that ISRIB rescued translation early in infection when P-eIF2α levels were low, but not late in infection when P-eIF2α levels were high. By treating cells with varying concentrations of poly(I:C) or arsenite to induce the ISR, we provide additional proof that ISRIB is unable to inhibit the ISR when intracellular P-eIF2α concentrations exceed a critical threshold level. Together, our data demonstrate that the effects of pharmacological activation of eIF2B are tuned by P-eIF2α concentration. Thus, ISRIB can mitigate undesirable outcomes of low-level ISR activation that may manifest neurological disease but leaves the cytoprotective effects of acute ISR activation intact. The insensitivity of cells to ISRIB during acute ISR may explain why ISRIB does not cause overt toxic side effects in vivo.
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spelling pubmed-63697412019-02-14 Small molecule ISRIB suppresses the integrated stress response within a defined window of activation Rabouw, Huib H. Langereis, Martijn A. Anand, Aditya A. Visser, Linda J. de Groot, Raoul J. Walter, Peter van Kuppeveld, Frank J. M. Proc Natl Acad Sci U S A Biological Sciences Activation of the integrated stress response (ISR) by a variety of stresses triggers phosphorylation of the α-subunit of translation initiation factor eIF2. P-eIF2α inhibits eIF2B, the guanine nucleotide exchange factor that recycles inactive eIF2•GDP to active eIF2•GTP. eIF2 phosphorylation thereby represses translation. Persistent activation of the ISR has been linked to the development of several neurological disorders, and modulation of the ISR promises new therapeutic strategies. Recently, a small-molecule ISR inhibitor (ISRIB) was identified that rescues translation in the presence of P-eIF2α by facilitating the assembly of more active eIF2B. ISRIB enhances cognitive memory processes and has therapeutic effects in brain-injured mice without displaying overt side effects. While using ISRIB to investigate the ISR in picornavirus-infected cells, we observed that ISRIB rescued translation early in infection when P-eIF2α levels were low, but not late in infection when P-eIF2α levels were high. By treating cells with varying concentrations of poly(I:C) or arsenite to induce the ISR, we provide additional proof that ISRIB is unable to inhibit the ISR when intracellular P-eIF2α concentrations exceed a critical threshold level. Together, our data demonstrate that the effects of pharmacological activation of eIF2B are tuned by P-eIF2α concentration. Thus, ISRIB can mitigate undesirable outcomes of low-level ISR activation that may manifest neurological disease but leaves the cytoprotective effects of acute ISR activation intact. The insensitivity of cells to ISRIB during acute ISR may explain why ISRIB does not cause overt toxic side effects in vivo. National Academy of Sciences 2019-02-05 2019-01-23 /pmc/articles/PMC6369741/ /pubmed/30674674 http://dx.doi.org/10.1073/pnas.1815767116 Text en Copyright © 2019 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Rabouw, Huib H.
Langereis, Martijn A.
Anand, Aditya A.
Visser, Linda J.
de Groot, Raoul J.
Walter, Peter
van Kuppeveld, Frank J. M.
Small molecule ISRIB suppresses the integrated stress response within a defined window of activation
title Small molecule ISRIB suppresses the integrated stress response within a defined window of activation
title_full Small molecule ISRIB suppresses the integrated stress response within a defined window of activation
title_fullStr Small molecule ISRIB suppresses the integrated stress response within a defined window of activation
title_full_unstemmed Small molecule ISRIB suppresses the integrated stress response within a defined window of activation
title_short Small molecule ISRIB suppresses the integrated stress response within a defined window of activation
title_sort small molecule isrib suppresses the integrated stress response within a defined window of activation
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6369741/
https://www.ncbi.nlm.nih.gov/pubmed/30674674
http://dx.doi.org/10.1073/pnas.1815767116
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