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PINK1 cleavage at position A103 by the mitochondrial protease PARL

Mutations in PTEN-induced kinase 1 (PINK1) cause early onset autosomal recessive Parkinson's disease (PD). PINK1 is a 63 kDa protein kinase, which exerts a neuroprotective function and is known to localize to mitochondria. Upon entry into the organelle, PINK1 is cleaved to produce a ∼53 kDa pro...

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Autores principales: Deas, Emma, Plun-Favreau, Helene, Gandhi, Sonia, Desmond, Howard, Kjaer, Svend, Loh, Samantha H.Y., Renton, Alan E.M., Harvey, Robert J., Whitworth, Alexander J., Martins, L. Miguel, Abramov, Andrey Y., Wood, Nicholas W.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3033179/
https://www.ncbi.nlm.nih.gov/pubmed/21138942
http://dx.doi.org/10.1093/hmg/ddq526
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author Deas, Emma
Plun-Favreau, Helene
Gandhi, Sonia
Desmond, Howard
Kjaer, Svend
Loh, Samantha H.Y.
Renton, Alan E.M.
Harvey, Robert J.
Whitworth, Alexander J.
Martins, L. Miguel
Abramov, Andrey Y.
Wood, Nicholas W.
author_facet Deas, Emma
Plun-Favreau, Helene
Gandhi, Sonia
Desmond, Howard
Kjaer, Svend
Loh, Samantha H.Y.
Renton, Alan E.M.
Harvey, Robert J.
Whitworth, Alexander J.
Martins, L. Miguel
Abramov, Andrey Y.
Wood, Nicholas W.
author_sort Deas, Emma
collection PubMed
description Mutations in PTEN-induced kinase 1 (PINK1) cause early onset autosomal recessive Parkinson's disease (PD). PINK1 is a 63 kDa protein kinase, which exerts a neuroprotective function and is known to localize to mitochondria. Upon entry into the organelle, PINK1 is cleaved to produce a ∼53 kDa protein (ΔN-PINK1). In this paper, we show that PINK1 is cleaved between amino acids Ala-103 and Phe-104 to generate ΔN-PINK1. We demonstrate that a reduced ability to cleave PINK1, and the consequent accumulation of full-length protein, results in mitochondrial abnormalities reminiscent of those observed in PINK1 knockout cells, including disruption of the mitochondrial network and a reduction in mitochondrial mass. Notably, we assessed three N-terminal PD-associated PINK1 mutations located close to the cleavage site and, while these do not prevent PINK1 cleavage, they alter the ratio of full-length to ΔN-PINK1 protein in cells, resulting in an altered mitochondrial phenotype. Finally, we show that PINK1 interacts with the mitochondrial protease presenilin-associated rhomboid-like protein (PARL) and that loss of PARL results in aberrant PINK1 cleavage in mammalian cells. These combined results suggest that PINK1 cleavage is important for basal mitochondrial health and that PARL cleaves PINK1 to produce the ΔN-PINK1 fragment.
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spelling pubmed-30331792011-02-03 PINK1 cleavage at position A103 by the mitochondrial protease PARL Deas, Emma Plun-Favreau, Helene Gandhi, Sonia Desmond, Howard Kjaer, Svend Loh, Samantha H.Y. Renton, Alan E.M. Harvey, Robert J. Whitworth, Alexander J. Martins, L. Miguel Abramov, Andrey Y. Wood, Nicholas W. Hum Mol Genet Articles Mutations in PTEN-induced kinase 1 (PINK1) cause early onset autosomal recessive Parkinson's disease (PD). PINK1 is a 63 kDa protein kinase, which exerts a neuroprotective function and is known to localize to mitochondria. Upon entry into the organelle, PINK1 is cleaved to produce a ∼53 kDa protein (ΔN-PINK1). In this paper, we show that PINK1 is cleaved between amino acids Ala-103 and Phe-104 to generate ΔN-PINK1. We demonstrate that a reduced ability to cleave PINK1, and the consequent accumulation of full-length protein, results in mitochondrial abnormalities reminiscent of those observed in PINK1 knockout cells, including disruption of the mitochondrial network and a reduction in mitochondrial mass. Notably, we assessed three N-terminal PD-associated PINK1 mutations located close to the cleavage site and, while these do not prevent PINK1 cleavage, they alter the ratio of full-length to ΔN-PINK1 protein in cells, resulting in an altered mitochondrial phenotype. Finally, we show that PINK1 interacts with the mitochondrial protease presenilin-associated rhomboid-like protein (PARL) and that loss of PARL results in aberrant PINK1 cleavage in mammalian cells. These combined results suggest that PINK1 cleavage is important for basal mitochondrial health and that PARL cleaves PINK1 to produce the ΔN-PINK1 fragment. Oxford University Press 2011-03-01 2010-12-06 /pmc/articles/PMC3033179/ /pubmed/21138942 http://dx.doi.org/10.1093/hmg/ddq526 Text en © The Author 2010. Published by Oxford University Press http://creativecommons.org/licenses/by-nc/2.5/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Deas, Emma
Plun-Favreau, Helene
Gandhi, Sonia
Desmond, Howard
Kjaer, Svend
Loh, Samantha H.Y.
Renton, Alan E.M.
Harvey, Robert J.
Whitworth, Alexander J.
Martins, L. Miguel
Abramov, Andrey Y.
Wood, Nicholas W.
PINK1 cleavage at position A103 by the mitochondrial protease PARL
title PINK1 cleavage at position A103 by the mitochondrial protease PARL
title_full PINK1 cleavage at position A103 by the mitochondrial protease PARL
title_fullStr PINK1 cleavage at position A103 by the mitochondrial protease PARL
title_full_unstemmed PINK1 cleavage at position A103 by the mitochondrial protease PARL
title_short PINK1 cleavage at position A103 by the mitochondrial protease PARL
title_sort pink1 cleavage at position a103 by the mitochondrial protease parl
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3033179/
https://www.ncbi.nlm.nih.gov/pubmed/21138942
http://dx.doi.org/10.1093/hmg/ddq526
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