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PINK1-Associated Parkinson's Disease Is Caused by Neuronal Vulnerability to Calcium-Induced Cell Death

Mutations in PINK1 cause autosomal recessive Parkinson's disease. PINK1 is a mitochondrial kinase of unknown function. We investigated calcium homeostasis and mitochondrial function in PINK1-deficient mammalian neurons. We demonstrate physiologically that PINK1 regulates calcium efflux from the...

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Autores principales: Gandhi, Sonia, Wood-Kaczmar, Alison, Yao, Zhi, Plun-Favreau, Helene, Deas, Emma, Klupsch, Kristina, Downward, Julian, Latchman, David S., Tabrizi, Sarah J., Wood, Nicholas W., Duchen, Michael R., Abramov, Andrey Y.
Formato: Texto
Lenguaje:English
Publicado: Cell Press 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2724101/
https://www.ncbi.nlm.nih.gov/pubmed/19285945
http://dx.doi.org/10.1016/j.molcel.2009.02.013
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author Gandhi, Sonia
Wood-Kaczmar, Alison
Yao, Zhi
Plun-Favreau, Helene
Deas, Emma
Klupsch, Kristina
Downward, Julian
Latchman, David S.
Tabrizi, Sarah J.
Wood, Nicholas W.
Duchen, Michael R.
Abramov, Andrey Y.
author_facet Gandhi, Sonia
Wood-Kaczmar, Alison
Yao, Zhi
Plun-Favreau, Helene
Deas, Emma
Klupsch, Kristina
Downward, Julian
Latchman, David S.
Tabrizi, Sarah J.
Wood, Nicholas W.
Duchen, Michael R.
Abramov, Andrey Y.
author_sort Gandhi, Sonia
collection PubMed
description Mutations in PINK1 cause autosomal recessive Parkinson's disease. PINK1 is a mitochondrial kinase of unknown function. We investigated calcium homeostasis and mitochondrial function in PINK1-deficient mammalian neurons. We demonstrate physiologically that PINK1 regulates calcium efflux from the mitochondria via the mitochondrial Na(+)/Ca(2+) exchanger. PINK1 deficiency causes mitochondrial accumulation of calcium, resulting in mitochondrial calcium overload. We show that calcium overload stimulates reactive oxygen species (ROS) production via NADPH oxidase. ROS production inhibits the glucose transporter, reducing substrate delivery and causing impaired respiration. We demonstrate that impaired respiration may be restored by provision of mitochondrial complex I and II substrates. Taken together, reduced mitochondrial calcium capacity and increased ROS lower the threshold of opening of the mitochondrial permeability transition pore (mPTP) such that physiological calcium stimuli become sufficient to induce mPTP opening in PINK1-deficient cells. Our findings propose a mechanism by which PINK1 dysfunction renders neurons vulnerable to cell death.
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spelling pubmed-27241012009-08-18 PINK1-Associated Parkinson's Disease Is Caused by Neuronal Vulnerability to Calcium-Induced Cell Death Gandhi, Sonia Wood-Kaczmar, Alison Yao, Zhi Plun-Favreau, Helene Deas, Emma Klupsch, Kristina Downward, Julian Latchman, David S. Tabrizi, Sarah J. Wood, Nicholas W. Duchen, Michael R. Abramov, Andrey Y. Mol Cell Article Mutations in PINK1 cause autosomal recessive Parkinson's disease. PINK1 is a mitochondrial kinase of unknown function. We investigated calcium homeostasis and mitochondrial function in PINK1-deficient mammalian neurons. We demonstrate physiologically that PINK1 regulates calcium efflux from the mitochondria via the mitochondrial Na(+)/Ca(2+) exchanger. PINK1 deficiency causes mitochondrial accumulation of calcium, resulting in mitochondrial calcium overload. We show that calcium overload stimulates reactive oxygen species (ROS) production via NADPH oxidase. ROS production inhibits the glucose transporter, reducing substrate delivery and causing impaired respiration. We demonstrate that impaired respiration may be restored by provision of mitochondrial complex I and II substrates. Taken together, reduced mitochondrial calcium capacity and increased ROS lower the threshold of opening of the mitochondrial permeability transition pore (mPTP) such that physiological calcium stimuli become sufficient to induce mPTP opening in PINK1-deficient cells. Our findings propose a mechanism by which PINK1 dysfunction renders neurons vulnerable to cell death. Cell Press 2009-03-13 /pmc/articles/PMC2724101/ /pubmed/19285945 http://dx.doi.org/10.1016/j.molcel.2009.02.013 Text en © 2009 ELL & Excerpta Medica. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Article
Gandhi, Sonia
Wood-Kaczmar, Alison
Yao, Zhi
Plun-Favreau, Helene
Deas, Emma
Klupsch, Kristina
Downward, Julian
Latchman, David S.
Tabrizi, Sarah J.
Wood, Nicholas W.
Duchen, Michael R.
Abramov, Andrey Y.
PINK1-Associated Parkinson's Disease Is Caused by Neuronal Vulnerability to Calcium-Induced Cell Death
title PINK1-Associated Parkinson's Disease Is Caused by Neuronal Vulnerability to Calcium-Induced Cell Death
title_full PINK1-Associated Parkinson's Disease Is Caused by Neuronal Vulnerability to Calcium-Induced Cell Death
title_fullStr PINK1-Associated Parkinson's Disease Is Caused by Neuronal Vulnerability to Calcium-Induced Cell Death
title_full_unstemmed PINK1-Associated Parkinson's Disease Is Caused by Neuronal Vulnerability to Calcium-Induced Cell Death
title_short PINK1-Associated Parkinson's Disease Is Caused by Neuronal Vulnerability to Calcium-Induced Cell Death
title_sort pink1-associated parkinson's disease is caused by neuronal vulnerability to calcium-induced cell death
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2724101/
https://www.ncbi.nlm.nih.gov/pubmed/19285945
http://dx.doi.org/10.1016/j.molcel.2009.02.013
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