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Reduced ER-mitochondrial contact sites and mitochondrial Ca(2+) flux in PRKN-mutant patient tyrosine hydroxylase reporter iPSC lines

Endoplasmic reticulum-mitochondrial contact sites (ERMCS) play an important role in mitochondrial dynamics, calcium signaling, and autophagy. Disruption of the ERMCS has been linked to several neurodegenerative diseases, including Alzheimer’s disease (AD), Parkinson’s disease (PD), and amyotrophic l...

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Autores principales: Yokota, Mutsumi, Yoshino, Yutaro, Hosoi, Mitsuko, Hashimoto, Ryota, Kakuta, Soichiro, Shiga, Takahiro, Ishikawa, Kei-Ichi, Okano, Hideyuki, Hattori, Nobutaka, Akamatsu, Wado, Koike, Masato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10514478/
https://www.ncbi.nlm.nih.gov/pubmed/37745304
http://dx.doi.org/10.3389/fcell.2023.1171440
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author Yokota, Mutsumi
Yoshino, Yutaro
Hosoi, Mitsuko
Hashimoto, Ryota
Kakuta, Soichiro
Shiga, Takahiro
Ishikawa, Kei-Ichi
Okano, Hideyuki
Hattori, Nobutaka
Akamatsu, Wado
Koike, Masato
author_facet Yokota, Mutsumi
Yoshino, Yutaro
Hosoi, Mitsuko
Hashimoto, Ryota
Kakuta, Soichiro
Shiga, Takahiro
Ishikawa, Kei-Ichi
Okano, Hideyuki
Hattori, Nobutaka
Akamatsu, Wado
Koike, Masato
author_sort Yokota, Mutsumi
collection PubMed
description Endoplasmic reticulum-mitochondrial contact sites (ERMCS) play an important role in mitochondrial dynamics, calcium signaling, and autophagy. Disruption of the ERMCS has been linked to several neurodegenerative diseases, including Alzheimer’s disease (AD), Parkinson’s disease (PD), and amyotrophic lateral sclerosis (ALS). However, the etiological role of ERMCS in these diseases remains unclear. We previously established tyrosine hydroxylase reporter (TH-GFP) iPSC lines from a PD patient with a PRKN mutation to perform correlative light-electron microscopy (CLEM) analysis and live cell imaging in GFP-expressing dopaminergic neurons. Here, we analyzed ERMCS in GFP-expressing PRKN-mutant dopaminergic neurons from patients using CLEM and a proximity ligation assay (PLA). The PLA showed that the ERMCS were significantly reduced in PRKN-mutant patient dopaminergic neurons compared to the control under normal conditions. The reduction of the ERMCS in PRKN-mutant patient dopaminergic neurons was further enhanced by treatment with a mitochondrial uncoupler. In addition, mitochondrial calcium imaging showed that mitochondrial Ca(2+) flux was significantly reduced in PRKN-mutant patient dopaminergic neurons compared to the control. These results suggest a defect in calcium flux from ER to mitochondria is due to the decreased ERMCS in PRKN-mutant patient dopaminergic neurons. Our study of ERMCS using TH-GFP iPSC lines would contribute to further understanding of the mechanisms of dopaminergic neuron degeneration in patients with PRKN mutations.
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spelling pubmed-105144782023-09-23 Reduced ER-mitochondrial contact sites and mitochondrial Ca(2+) flux in PRKN-mutant patient tyrosine hydroxylase reporter iPSC lines Yokota, Mutsumi Yoshino, Yutaro Hosoi, Mitsuko Hashimoto, Ryota Kakuta, Soichiro Shiga, Takahiro Ishikawa, Kei-Ichi Okano, Hideyuki Hattori, Nobutaka Akamatsu, Wado Koike, Masato Front Cell Dev Biol Cell and Developmental Biology Endoplasmic reticulum-mitochondrial contact sites (ERMCS) play an important role in mitochondrial dynamics, calcium signaling, and autophagy. Disruption of the ERMCS has been linked to several neurodegenerative diseases, including Alzheimer’s disease (AD), Parkinson’s disease (PD), and amyotrophic lateral sclerosis (ALS). However, the etiological role of ERMCS in these diseases remains unclear. We previously established tyrosine hydroxylase reporter (TH-GFP) iPSC lines from a PD patient with a PRKN mutation to perform correlative light-electron microscopy (CLEM) analysis and live cell imaging in GFP-expressing dopaminergic neurons. Here, we analyzed ERMCS in GFP-expressing PRKN-mutant dopaminergic neurons from patients using CLEM and a proximity ligation assay (PLA). The PLA showed that the ERMCS were significantly reduced in PRKN-mutant patient dopaminergic neurons compared to the control under normal conditions. The reduction of the ERMCS in PRKN-mutant patient dopaminergic neurons was further enhanced by treatment with a mitochondrial uncoupler. In addition, mitochondrial calcium imaging showed that mitochondrial Ca(2+) flux was significantly reduced in PRKN-mutant patient dopaminergic neurons compared to the control. These results suggest a defect in calcium flux from ER to mitochondria is due to the decreased ERMCS in PRKN-mutant patient dopaminergic neurons. Our study of ERMCS using TH-GFP iPSC lines would contribute to further understanding of the mechanisms of dopaminergic neuron degeneration in patients with PRKN mutations. Frontiers Media S.A. 2023-09-08 /pmc/articles/PMC10514478/ /pubmed/37745304 http://dx.doi.org/10.3389/fcell.2023.1171440 Text en Copyright © 2023 Yokota, Yoshino, Hosoi, Hashimoto, Kakuta, Shiga, Ishikawa, Okano, Hattori, Akamatsu and Koike. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Yokota, Mutsumi
Yoshino, Yutaro
Hosoi, Mitsuko
Hashimoto, Ryota
Kakuta, Soichiro
Shiga, Takahiro
Ishikawa, Kei-Ichi
Okano, Hideyuki
Hattori, Nobutaka
Akamatsu, Wado
Koike, Masato
Reduced ER-mitochondrial contact sites and mitochondrial Ca(2+) flux in PRKN-mutant patient tyrosine hydroxylase reporter iPSC lines
title Reduced ER-mitochondrial contact sites and mitochondrial Ca(2+) flux in PRKN-mutant patient tyrosine hydroxylase reporter iPSC lines
title_full Reduced ER-mitochondrial contact sites and mitochondrial Ca(2+) flux in PRKN-mutant patient tyrosine hydroxylase reporter iPSC lines
title_fullStr Reduced ER-mitochondrial contact sites and mitochondrial Ca(2+) flux in PRKN-mutant patient tyrosine hydroxylase reporter iPSC lines
title_full_unstemmed Reduced ER-mitochondrial contact sites and mitochondrial Ca(2+) flux in PRKN-mutant patient tyrosine hydroxylase reporter iPSC lines
title_short Reduced ER-mitochondrial contact sites and mitochondrial Ca(2+) flux in PRKN-mutant patient tyrosine hydroxylase reporter iPSC lines
title_sort reduced er-mitochondrial contact sites and mitochondrial ca(2+) flux in prkn-mutant patient tyrosine hydroxylase reporter ipsc lines
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10514478/
https://www.ncbi.nlm.nih.gov/pubmed/37745304
http://dx.doi.org/10.3389/fcell.2023.1171440
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