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Mitofusin‐2 knockdown increases ER–mitochondria contact and decreases amyloid β‐peptide production

Mitochondria are physically and biochemically in contact with other organelles including the endoplasmic reticulum (ER). Such contacts are formed between mitochondria‐associated ER membranes (MAM), specialized subregions of ER, and the outer mitochondrial membrane (OMM). We have previously shown inc...

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Autores principales: Leal, Nuno Santos, Schreiner, Bernadette, Pinho, Catarina Moreira, Filadi, Riccardo, Wiehager, Birgitta, Karlström, Helena, Pizzo, Paola, Ankarcrona, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4988279/
https://www.ncbi.nlm.nih.gov/pubmed/27203684
http://dx.doi.org/10.1111/jcmm.12863
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author Leal, Nuno Santos
Schreiner, Bernadette
Pinho, Catarina Moreira
Filadi, Riccardo
Wiehager, Birgitta
Karlström, Helena
Pizzo, Paola
Ankarcrona, Maria
author_facet Leal, Nuno Santos
Schreiner, Bernadette
Pinho, Catarina Moreira
Filadi, Riccardo
Wiehager, Birgitta
Karlström, Helena
Pizzo, Paola
Ankarcrona, Maria
author_sort Leal, Nuno Santos
collection PubMed
description Mitochondria are physically and biochemically in contact with other organelles including the endoplasmic reticulum (ER). Such contacts are formed between mitochondria‐associated ER membranes (MAM), specialized subregions of ER, and the outer mitochondrial membrane (OMM). We have previously shown increased expression of MAM‐associated proteins and enhanced ER to mitochondria Ca(2+) transfer from ER to mitochondria in Alzheimer's disease (AD) and amyloid β‐peptide (Aβ)‐related neuronal models. Here, we report that siRNA knockdown of mitofusin‐2 (Mfn2), a protein that is involved in the tethering of ER and mitochondria, leads to increased contact between the two organelles. Cells depleted in Mfn2 showed increased Ca(2+) transfer from ER to mitchondria and longer stretches of ER forming contacts with OMM. Interestingly, increased contact resulted in decreased concentrations of intra‐ and extracellular Aβ(40) and Aβ(42). Analysis of γ‐secretase protein expression, maturation and activity revealed that the low Aβ concentrations were a result of impaired γ‐secretase complex function. Amyloid‐β precursor protein (APP), β‐site APP‐cleaving enzyme 1 and neprilysin expression as well as neprilysin activity were not affected by Mfn2 siRNA treatment. In summary, our data shows that modulation of ER–mitochondria contact affects γ‐secretase activity and Aβ generation. Increased ER–mitochondria contact results in lower γ‐secretase activity suggesting a new mechanism by which Aβ generation can be controlled.
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spelling pubmed-49882792016-09-01 Mitofusin‐2 knockdown increases ER–mitochondria contact and decreases amyloid β‐peptide production Leal, Nuno Santos Schreiner, Bernadette Pinho, Catarina Moreira Filadi, Riccardo Wiehager, Birgitta Karlström, Helena Pizzo, Paola Ankarcrona, Maria J Cell Mol Med Original Articles Mitochondria are physically and biochemically in contact with other organelles including the endoplasmic reticulum (ER). Such contacts are formed between mitochondria‐associated ER membranes (MAM), specialized subregions of ER, and the outer mitochondrial membrane (OMM). We have previously shown increased expression of MAM‐associated proteins and enhanced ER to mitochondria Ca(2+) transfer from ER to mitochondria in Alzheimer's disease (AD) and amyloid β‐peptide (Aβ)‐related neuronal models. Here, we report that siRNA knockdown of mitofusin‐2 (Mfn2), a protein that is involved in the tethering of ER and mitochondria, leads to increased contact between the two organelles. Cells depleted in Mfn2 showed increased Ca(2+) transfer from ER to mitchondria and longer stretches of ER forming contacts with OMM. Interestingly, increased contact resulted in decreased concentrations of intra‐ and extracellular Aβ(40) and Aβ(42). Analysis of γ‐secretase protein expression, maturation and activity revealed that the low Aβ concentrations were a result of impaired γ‐secretase complex function. Amyloid‐β precursor protein (APP), β‐site APP‐cleaving enzyme 1 and neprilysin expression as well as neprilysin activity were not affected by Mfn2 siRNA treatment. In summary, our data shows that modulation of ER–mitochondria contact affects γ‐secretase activity and Aβ generation. Increased ER–mitochondria contact results in lower γ‐secretase activity suggesting a new mechanism by which Aβ generation can be controlled. John Wiley and Sons Inc. 2016-05-20 2016-09 /pmc/articles/PMC4988279/ /pubmed/27203684 http://dx.doi.org/10.1111/jcmm.12863 Text en © 2016 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Leal, Nuno Santos
Schreiner, Bernadette
Pinho, Catarina Moreira
Filadi, Riccardo
Wiehager, Birgitta
Karlström, Helena
Pizzo, Paola
Ankarcrona, Maria
Mitofusin‐2 knockdown increases ER–mitochondria contact and decreases amyloid β‐peptide production
title Mitofusin‐2 knockdown increases ER–mitochondria contact and decreases amyloid β‐peptide production
title_full Mitofusin‐2 knockdown increases ER–mitochondria contact and decreases amyloid β‐peptide production
title_fullStr Mitofusin‐2 knockdown increases ER–mitochondria contact and decreases amyloid β‐peptide production
title_full_unstemmed Mitofusin‐2 knockdown increases ER–mitochondria contact and decreases amyloid β‐peptide production
title_short Mitofusin‐2 knockdown increases ER–mitochondria contact and decreases amyloid β‐peptide production
title_sort mitofusin‐2 knockdown increases er–mitochondria contact and decreases amyloid β‐peptide production
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4988279/
https://www.ncbi.nlm.nih.gov/pubmed/27203684
http://dx.doi.org/10.1111/jcmm.12863
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