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Osmotic Stress Changes the Expression and Subcellular Localization of the Batten Disease Protein CLN3

Juvenile CLN3 disease (formerly known as juvenile neuronal ceroid lipofuscinosis) is a fatal childhood neurodegenerative disorder caused by mutations in the CLN3 gene. CLN3 encodes a putative lysosomal transmembrane protein with unknown function. Previous cell culture studies using CLN3-overexpressi...

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Autores principales: Getty, Amanda, Kovács, Attila D., Lengyel-Nelson, Tímea, Cardillo, Andrew, Hof, Caitlin, Chan, Chun-Hung, Pearce, David A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3688782/
https://www.ncbi.nlm.nih.gov/pubmed/23840424
http://dx.doi.org/10.1371/journal.pone.0066203
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author Getty, Amanda
Kovács, Attila D.
Lengyel-Nelson, Tímea
Cardillo, Andrew
Hof, Caitlin
Chan, Chun-Hung
Pearce, David A.
author_facet Getty, Amanda
Kovács, Attila D.
Lengyel-Nelson, Tímea
Cardillo, Andrew
Hof, Caitlin
Chan, Chun-Hung
Pearce, David A.
author_sort Getty, Amanda
collection PubMed
description Juvenile CLN3 disease (formerly known as juvenile neuronal ceroid lipofuscinosis) is a fatal childhood neurodegenerative disorder caused by mutations in the CLN3 gene. CLN3 encodes a putative lysosomal transmembrane protein with unknown function. Previous cell culture studies using CLN3-overexpressing vectors and/or anti-CLN3 antibodies with questionable specificity have also localized CLN3 in cellular structures other than lysosomes. Osmoregulation of the mouse Cln3 mRNA level in kidney cells was recently reported. To clarify the subcellular localization of the CLN3 protein and to investigate if human CLN3 expression and localization is affected by osmotic changes we generated a stably transfected BHK (baby hamster kidney) cell line that expresses a moderate level of myc-tagged human CLN3 under the control of the human ubiquitin C promoter. Hyperosmolarity (800 mOsm), achieved by either NaCl/urea or sucrose, dramatically increased the mRNA and protein levels of CLN3 as determined by quantitative real-time PCR and Western blotting. Under isotonic conditions (300 mOsm), human CLN3 was found in a punctate vesicular pattern surrounding the nucleus with prominent Golgi and lysosomal localizations. CLN3-positive early endosomes, late endosomes and cholesterol/sphingolipid-enriched plasma membrane microdomain caveolae were also observed. Increasing the osmolarity of the culture medium to 800 mOsm extended CLN3 distribution away from the perinuclear region and enhanced the lysosomal localization of CLN3. Our results reveal that CLN3 has multiple subcellular localizations within the cell, which, together with its expression, prominently change following osmotic stress. These data suggest that CLN3 is involved in the response and adaptation to cellular stress.
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spelling pubmed-36887822013-07-09 Osmotic Stress Changes the Expression and Subcellular Localization of the Batten Disease Protein CLN3 Getty, Amanda Kovács, Attila D. Lengyel-Nelson, Tímea Cardillo, Andrew Hof, Caitlin Chan, Chun-Hung Pearce, David A. PLoS One Research Article Juvenile CLN3 disease (formerly known as juvenile neuronal ceroid lipofuscinosis) is a fatal childhood neurodegenerative disorder caused by mutations in the CLN3 gene. CLN3 encodes a putative lysosomal transmembrane protein with unknown function. Previous cell culture studies using CLN3-overexpressing vectors and/or anti-CLN3 antibodies with questionable specificity have also localized CLN3 in cellular structures other than lysosomes. Osmoregulation of the mouse Cln3 mRNA level in kidney cells was recently reported. To clarify the subcellular localization of the CLN3 protein and to investigate if human CLN3 expression and localization is affected by osmotic changes we generated a stably transfected BHK (baby hamster kidney) cell line that expresses a moderate level of myc-tagged human CLN3 under the control of the human ubiquitin C promoter. Hyperosmolarity (800 mOsm), achieved by either NaCl/urea or sucrose, dramatically increased the mRNA and protein levels of CLN3 as determined by quantitative real-time PCR and Western blotting. Under isotonic conditions (300 mOsm), human CLN3 was found in a punctate vesicular pattern surrounding the nucleus with prominent Golgi and lysosomal localizations. CLN3-positive early endosomes, late endosomes and cholesterol/sphingolipid-enriched plasma membrane microdomain caveolae were also observed. Increasing the osmolarity of the culture medium to 800 mOsm extended CLN3 distribution away from the perinuclear region and enhanced the lysosomal localization of CLN3. Our results reveal that CLN3 has multiple subcellular localizations within the cell, which, together with its expression, prominently change following osmotic stress. These data suggest that CLN3 is involved in the response and adaptation to cellular stress. Public Library of Science 2013-06-20 /pmc/articles/PMC3688782/ /pubmed/23840424 http://dx.doi.org/10.1371/journal.pone.0066203 Text en © 2013 Getty et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Getty, Amanda
Kovács, Attila D.
Lengyel-Nelson, Tímea
Cardillo, Andrew
Hof, Caitlin
Chan, Chun-Hung
Pearce, David A.
Osmotic Stress Changes the Expression and Subcellular Localization of the Batten Disease Protein CLN3
title Osmotic Stress Changes the Expression and Subcellular Localization of the Batten Disease Protein CLN3
title_full Osmotic Stress Changes the Expression and Subcellular Localization of the Batten Disease Protein CLN3
title_fullStr Osmotic Stress Changes the Expression and Subcellular Localization of the Batten Disease Protein CLN3
title_full_unstemmed Osmotic Stress Changes the Expression and Subcellular Localization of the Batten Disease Protein CLN3
title_short Osmotic Stress Changes the Expression and Subcellular Localization of the Batten Disease Protein CLN3
title_sort osmotic stress changes the expression and subcellular localization of the batten disease protein cln3
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3688782/
https://www.ncbi.nlm.nih.gov/pubmed/23840424
http://dx.doi.org/10.1371/journal.pone.0066203
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