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TPC1 Has Two Variant Isoforms, and Their Removal Has Different Effects on Endo-Lysosomal Functions Compared to Loss of TPC2

Organelle ion homeostasis within the endo-lysosomal system is critical for physiological functions. Two-pore channels (TPCs) are cation channels that reside in endo-lysosomal organelles, and overexpression results in endo-lysosomal trafficking defects. However, the impact of a lack of TPC expression...

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Autores principales: Ruas, Margarida, Chuang, Kai-Ting, Davis, Lianne C., Al-Douri, Areej, Tynan, Patricia W., Tunn, Ruth, Teboul, Lydia, Galione, Antony, Parrington, John
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4386455/
https://www.ncbi.nlm.nih.gov/pubmed/25135478
http://dx.doi.org/10.1128/MCB.00113-14
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author Ruas, Margarida
Chuang, Kai-Ting
Davis, Lianne C.
Al-Douri, Areej
Tynan, Patricia W.
Tunn, Ruth
Teboul, Lydia
Galione, Antony
Parrington, John
author_facet Ruas, Margarida
Chuang, Kai-Ting
Davis, Lianne C.
Al-Douri, Areej
Tynan, Patricia W.
Tunn, Ruth
Teboul, Lydia
Galione, Antony
Parrington, John
author_sort Ruas, Margarida
collection PubMed
description Organelle ion homeostasis within the endo-lysosomal system is critical for physiological functions. Two-pore channels (TPCs) are cation channels that reside in endo-lysosomal organelles, and overexpression results in endo-lysosomal trafficking defects. However, the impact of a lack of TPC expression on endo-lysosomal trafficking is unknown. Here, we characterize Tpcn1 expression in two transgenic mouse lines (Tpcn1(XG716) and Tpcn1(T159)) and show expression of a novel evolutionarily conserved Tpcn1B transcript from an alternative promoter, raising important questions regarding the status of Tpcn1 expression in mice recently described to be Tpcn1 knockouts. We show that the transgenic Tpcn1(T159) line lacks expression of both Tpcn1 isoforms in all tissues analyzed. Using mouse embryonic fibroblasts (MEFs) from Tpcn1(−/−) and Tpcn2(−/−) animals, we show that a lack of Tpcn1 or Tpcn2 expression has no significant impact on resting endo-lysosomal pH or morphology. However, differential effects in endo-lysosomal function were observed upon the loss of Tpcn1 or Tpcn2 expression; thus, while Tpcn1(−/−) MEFs have impaired trafficking of cholera toxin from the plasma membrane to the Golgi apparatus, Tpcn2(−/−) MEFs show slower kinetics of ligand-induced platelet-derived growth factor receptor β (PDGFRβ) degradation, which is dependent on trafficking to lysosomes. Our findings indicate that TPC1 and TPC2 have important but distinct roles in the endo-lysosomal pathway.
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spelling pubmed-43864552015-04-28 TPC1 Has Two Variant Isoforms, and Their Removal Has Different Effects on Endo-Lysosomal Functions Compared to Loss of TPC2 Ruas, Margarida Chuang, Kai-Ting Davis, Lianne C. Al-Douri, Areej Tynan, Patricia W. Tunn, Ruth Teboul, Lydia Galione, Antony Parrington, John Mol Cell Biol Articles Organelle ion homeostasis within the endo-lysosomal system is critical for physiological functions. Two-pore channels (TPCs) are cation channels that reside in endo-lysosomal organelles, and overexpression results in endo-lysosomal trafficking defects. However, the impact of a lack of TPC expression on endo-lysosomal trafficking is unknown. Here, we characterize Tpcn1 expression in two transgenic mouse lines (Tpcn1(XG716) and Tpcn1(T159)) and show expression of a novel evolutionarily conserved Tpcn1B transcript from an alternative promoter, raising important questions regarding the status of Tpcn1 expression in mice recently described to be Tpcn1 knockouts. We show that the transgenic Tpcn1(T159) line lacks expression of both Tpcn1 isoforms in all tissues analyzed. Using mouse embryonic fibroblasts (MEFs) from Tpcn1(−/−) and Tpcn2(−/−) animals, we show that a lack of Tpcn1 or Tpcn2 expression has no significant impact on resting endo-lysosomal pH or morphology. However, differential effects in endo-lysosomal function were observed upon the loss of Tpcn1 or Tpcn2 expression; thus, while Tpcn1(−/−) MEFs have impaired trafficking of cholera toxin from the plasma membrane to the Golgi apparatus, Tpcn2(−/−) MEFs show slower kinetics of ligand-induced platelet-derived growth factor receptor β (PDGFRβ) degradation, which is dependent on trafficking to lysosomes. Our findings indicate that TPC1 and TPC2 have important but distinct roles in the endo-lysosomal pathway. American Society for Microbiology 2014-11 /pmc/articles/PMC4386455/ /pubmed/25135478 http://dx.doi.org/10.1128/MCB.00113-14 Text en Copyright © 2014 Ruas et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 3.0 Unported license (http://creativecommons.org/licenses/by/3.0/) .
spellingShingle Articles
Ruas, Margarida
Chuang, Kai-Ting
Davis, Lianne C.
Al-Douri, Areej
Tynan, Patricia W.
Tunn, Ruth
Teboul, Lydia
Galione, Antony
Parrington, John
TPC1 Has Two Variant Isoforms, and Their Removal Has Different Effects on Endo-Lysosomal Functions Compared to Loss of TPC2
title TPC1 Has Two Variant Isoforms, and Their Removal Has Different Effects on Endo-Lysosomal Functions Compared to Loss of TPC2
title_full TPC1 Has Two Variant Isoforms, and Their Removal Has Different Effects on Endo-Lysosomal Functions Compared to Loss of TPC2
title_fullStr TPC1 Has Two Variant Isoforms, and Their Removal Has Different Effects on Endo-Lysosomal Functions Compared to Loss of TPC2
title_full_unstemmed TPC1 Has Two Variant Isoforms, and Their Removal Has Different Effects on Endo-Lysosomal Functions Compared to Loss of TPC2
title_short TPC1 Has Two Variant Isoforms, and Their Removal Has Different Effects on Endo-Lysosomal Functions Compared to Loss of TPC2
title_sort tpc1 has two variant isoforms, and their removal has different effects on endo-lysosomal functions compared to loss of tpc2
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4386455/
https://www.ncbi.nlm.nih.gov/pubmed/25135478
http://dx.doi.org/10.1128/MCB.00113-14
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