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The Batten disease protein CLN3 is important for stress granules dynamics and translational activity

The assembly of membrane-less organelles such as stress granules (SGs) is emerging as central in helping cells rapidly respond and adapt to stress. Following stress sensing, the resulting global translational shutoff leads to the condensation of stalled mRNAs and proteins into SGs. By reorganizing c...

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Autores principales: Relton, Emily L., Roth, Nicolas J., Yasa, Seda, Kaleem, Abuzar, Hermey, Guido, Minnis, Christopher J., Mole, Sara E., Shelkovnikova, Tatyana, Lefrancois, Stephane, McCormick, Peter J., Locker, Nicolas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10149212/
https://www.ncbi.nlm.nih.gov/pubmed/36965618
http://dx.doi.org/10.1016/j.jbc.2023.104649
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author Relton, Emily L.
Roth, Nicolas J.
Yasa, Seda
Kaleem, Abuzar
Hermey, Guido
Minnis, Christopher J.
Mole, Sara E.
Shelkovnikova, Tatyana
Lefrancois, Stephane
McCormick, Peter J.
Locker, Nicolas
author_facet Relton, Emily L.
Roth, Nicolas J.
Yasa, Seda
Kaleem, Abuzar
Hermey, Guido
Minnis, Christopher J.
Mole, Sara E.
Shelkovnikova, Tatyana
Lefrancois, Stephane
McCormick, Peter J.
Locker, Nicolas
author_sort Relton, Emily L.
collection PubMed
description The assembly of membrane-less organelles such as stress granules (SGs) is emerging as central in helping cells rapidly respond and adapt to stress. Following stress sensing, the resulting global translational shutoff leads to the condensation of stalled mRNAs and proteins into SGs. By reorganizing cytoplasmic contents, SGs can modulate RNA translation, biochemical reactions, and signaling cascades to promote survival until the stress is resolved. While mechanisms for SG disassembly are not widely understood, the resolution of SGs is important for maintaining cell viability and protein homeostasis. Mutations that lead to persistent or aberrant SGs are increasingly associated with neuropathology and a hallmark of several neurodegenerative diseases. Mutations in CLN3 are causative of juvenile neuronal ceroid lipofuscinosis, a rare neurodegenerative disease affecting children also known as Batten disease. CLN3 encodes a transmembrane lysosomal protein implicated in autophagy, endosomal trafficking, metabolism, and response to oxidative stress. Using a HeLa cell model lacking CLN3, we now show that CLN3(KO) is associated with an altered metabolic profile, reduced global translation, and altered stress signaling. Furthermore, loss of CLN3 function results in perturbations in SG dynamics, resulting in assembly and disassembly defects, and altered expression of the key SG nucleating factor G3BP1. With a growing interest in SG-modulating drugs for the treatment of neurodegenerative diseases, novel insights into the molecular basis of CLN3 Batten disease may reveal avenues for disease-modifying treatments for this debilitating childhood disease.
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spelling pubmed-101492122023-05-01 The Batten disease protein CLN3 is important for stress granules dynamics and translational activity Relton, Emily L. Roth, Nicolas J. Yasa, Seda Kaleem, Abuzar Hermey, Guido Minnis, Christopher J. Mole, Sara E. Shelkovnikova, Tatyana Lefrancois, Stephane McCormick, Peter J. Locker, Nicolas J Biol Chem Research Article The assembly of membrane-less organelles such as stress granules (SGs) is emerging as central in helping cells rapidly respond and adapt to stress. Following stress sensing, the resulting global translational shutoff leads to the condensation of stalled mRNAs and proteins into SGs. By reorganizing cytoplasmic contents, SGs can modulate RNA translation, biochemical reactions, and signaling cascades to promote survival until the stress is resolved. While mechanisms for SG disassembly are not widely understood, the resolution of SGs is important for maintaining cell viability and protein homeostasis. Mutations that lead to persistent or aberrant SGs are increasingly associated with neuropathology and a hallmark of several neurodegenerative diseases. Mutations in CLN3 are causative of juvenile neuronal ceroid lipofuscinosis, a rare neurodegenerative disease affecting children also known as Batten disease. CLN3 encodes a transmembrane lysosomal protein implicated in autophagy, endosomal trafficking, metabolism, and response to oxidative stress. Using a HeLa cell model lacking CLN3, we now show that CLN3(KO) is associated with an altered metabolic profile, reduced global translation, and altered stress signaling. Furthermore, loss of CLN3 function results in perturbations in SG dynamics, resulting in assembly and disassembly defects, and altered expression of the key SG nucleating factor G3BP1. With a growing interest in SG-modulating drugs for the treatment of neurodegenerative diseases, novel insights into the molecular basis of CLN3 Batten disease may reveal avenues for disease-modifying treatments for this debilitating childhood disease. American Society for Biochemistry and Molecular Biology 2023-03-24 /pmc/articles/PMC10149212/ /pubmed/36965618 http://dx.doi.org/10.1016/j.jbc.2023.104649 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Relton, Emily L.
Roth, Nicolas J.
Yasa, Seda
Kaleem, Abuzar
Hermey, Guido
Minnis, Christopher J.
Mole, Sara E.
Shelkovnikova, Tatyana
Lefrancois, Stephane
McCormick, Peter J.
Locker, Nicolas
The Batten disease protein CLN3 is important for stress granules dynamics and translational activity
title The Batten disease protein CLN3 is important for stress granules dynamics and translational activity
title_full The Batten disease protein CLN3 is important for stress granules dynamics and translational activity
title_fullStr The Batten disease protein CLN3 is important for stress granules dynamics and translational activity
title_full_unstemmed The Batten disease protein CLN3 is important for stress granules dynamics and translational activity
title_short The Batten disease protein CLN3 is important for stress granules dynamics and translational activity
title_sort batten disease protein cln3 is important for stress granules dynamics and translational activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10149212/
https://www.ncbi.nlm.nih.gov/pubmed/36965618
http://dx.doi.org/10.1016/j.jbc.2023.104649
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