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Activation of mitophagy leads to decline in Mfn2 and loss of mitochondrial mass in Fuchs endothelial corneal dystrophy

Human corneal endothelial cells (HCEnCs) are terminally differentiated cells that have limited regenerative potential. The large numbers of mitochondria in HCEnCs are critical for pump and barrier function required for corneal hydration and transparency. Fuchs Endothelial Corneal Dystrophy (FECD) is...

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Autores principales: Benischke, Anne-Sophie, Vasanth, Shivakumar, Miyai, Takashi, Katikireddy, Kishore Reddy, White, Tomas, Chen, Yuming, Halilovic, Adna, Price, Marianne, Price, Francis, Liton, Paloma B., Jurkunas, Ula V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5532298/
https://www.ncbi.nlm.nih.gov/pubmed/28751712
http://dx.doi.org/10.1038/s41598-017-06523-2
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author Benischke, Anne-Sophie
Vasanth, Shivakumar
Miyai, Takashi
Katikireddy, Kishore Reddy
White, Tomas
Chen, Yuming
Halilovic, Adna
Price, Marianne
Price, Francis
Liton, Paloma B.
Jurkunas, Ula V.
author_facet Benischke, Anne-Sophie
Vasanth, Shivakumar
Miyai, Takashi
Katikireddy, Kishore Reddy
White, Tomas
Chen, Yuming
Halilovic, Adna
Price, Marianne
Price, Francis
Liton, Paloma B.
Jurkunas, Ula V.
author_sort Benischke, Anne-Sophie
collection PubMed
description Human corneal endothelial cells (HCEnCs) are terminally differentiated cells that have limited regenerative potential. The large numbers of mitochondria in HCEnCs are critical for pump and barrier function required for corneal hydration and transparency. Fuchs Endothelial Corneal Dystrophy (FECD) is a highly prevalent late-onset oxidative stress disorder characterized by progressive loss of HCEnCs. We previously reported increased mitochondrial fragmentation and reduced ATP and mtDNA copy number in FECD. Herein, carbonyl cyanide m-chlorophenyl hydrazone (CCCP)-induced mitochondrial depolarization decreased mitochondrial mass and Mfn2 levels, which were rescued with mitophagy blocker, bafilomycin, in FECD. Moreover, electron transport chain complex (I, V) decrease in FECD indicated deficient mitochondrial bioenergetics. Transmission electron microscopy of FECD tissues displayed an increased number of autophagic vacuoles containing degenerated and swollen mitochondria with cristolysis. An elevation of LC3-II and LAMP1 and downregulation of Mfn2 in mitochondrial fractions suggested that loss of fusion capacity targets fragmented mitochondria to the pre-autophagic pool and upregulates mitophagy. CCCP-induced mitochondrial fragmentation leads to Mfn2 and LC3 co-localization without activation of proteosome, suggesting a novel Mfn2 degradation pathway via mitophagy. These data indicate constitutive activation of mitophagy results in reduction of mitochondrial mass and abrogates cellular bioenergetics during degeneration of post-mitotic cells of ocular tissue.
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spelling pubmed-55322982017-08-02 Activation of mitophagy leads to decline in Mfn2 and loss of mitochondrial mass in Fuchs endothelial corneal dystrophy Benischke, Anne-Sophie Vasanth, Shivakumar Miyai, Takashi Katikireddy, Kishore Reddy White, Tomas Chen, Yuming Halilovic, Adna Price, Marianne Price, Francis Liton, Paloma B. Jurkunas, Ula V. Sci Rep Article Human corneal endothelial cells (HCEnCs) are terminally differentiated cells that have limited regenerative potential. The large numbers of mitochondria in HCEnCs are critical for pump and barrier function required for corneal hydration and transparency. Fuchs Endothelial Corneal Dystrophy (FECD) is a highly prevalent late-onset oxidative stress disorder characterized by progressive loss of HCEnCs. We previously reported increased mitochondrial fragmentation and reduced ATP and mtDNA copy number in FECD. Herein, carbonyl cyanide m-chlorophenyl hydrazone (CCCP)-induced mitochondrial depolarization decreased mitochondrial mass and Mfn2 levels, which were rescued with mitophagy blocker, bafilomycin, in FECD. Moreover, electron transport chain complex (I, V) decrease in FECD indicated deficient mitochondrial bioenergetics. Transmission electron microscopy of FECD tissues displayed an increased number of autophagic vacuoles containing degenerated and swollen mitochondria with cristolysis. An elevation of LC3-II and LAMP1 and downregulation of Mfn2 in mitochondrial fractions suggested that loss of fusion capacity targets fragmented mitochondria to the pre-autophagic pool and upregulates mitophagy. CCCP-induced mitochondrial fragmentation leads to Mfn2 and LC3 co-localization without activation of proteosome, suggesting a novel Mfn2 degradation pathway via mitophagy. These data indicate constitutive activation of mitophagy results in reduction of mitochondrial mass and abrogates cellular bioenergetics during degeneration of post-mitotic cells of ocular tissue. Nature Publishing Group UK 2017-07-27 /pmc/articles/PMC5532298/ /pubmed/28751712 http://dx.doi.org/10.1038/s41598-017-06523-2 Text en © The Author(s) 2017 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Benischke, Anne-Sophie
Vasanth, Shivakumar
Miyai, Takashi
Katikireddy, Kishore Reddy
White, Tomas
Chen, Yuming
Halilovic, Adna
Price, Marianne
Price, Francis
Liton, Paloma B.
Jurkunas, Ula V.
Activation of mitophagy leads to decline in Mfn2 and loss of mitochondrial mass in Fuchs endothelial corneal dystrophy
title Activation of mitophagy leads to decline in Mfn2 and loss of mitochondrial mass in Fuchs endothelial corneal dystrophy
title_full Activation of mitophagy leads to decline in Mfn2 and loss of mitochondrial mass in Fuchs endothelial corneal dystrophy
title_fullStr Activation of mitophagy leads to decline in Mfn2 and loss of mitochondrial mass in Fuchs endothelial corneal dystrophy
title_full_unstemmed Activation of mitophagy leads to decline in Mfn2 and loss of mitochondrial mass in Fuchs endothelial corneal dystrophy
title_short Activation of mitophagy leads to decline in Mfn2 and loss of mitochondrial mass in Fuchs endothelial corneal dystrophy
title_sort activation of mitophagy leads to decline in mfn2 and loss of mitochondrial mass in fuchs endothelial corneal dystrophy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5532298/
https://www.ncbi.nlm.nih.gov/pubmed/28751712
http://dx.doi.org/10.1038/s41598-017-06523-2
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