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PINK1 is activated by mitochondrial membrane potential depolarization and stimulates Parkin E3 ligase activity by phosphorylating Serine 65

Missense mutations in PTEN-induced kinase 1 (PINK1) cause autosomal-recessive inherited Parkinson's disease (PD). We have exploited our recent discovery that recombinant insect PINK1 is catalytically active to test whether PINK1 directly phosphorylates 15 proteins encoded by PD-associated genes...

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Autores principales: Kondapalli, Chandana, Kazlauskaite, Agne, Zhang, Ning, Woodroof, Helen I., Campbell, David G., Gourlay, Robert, Burchell, Lynn, Walden, Helen, Macartney, Thomas J., Deak, Maria, Knebel, Axel, Alessi, Dario R., Muqit, Miratul M. K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3376738/
https://www.ncbi.nlm.nih.gov/pubmed/22724072
http://dx.doi.org/10.1098/rsob.120080
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author Kondapalli, Chandana
Kazlauskaite, Agne
Zhang, Ning
Woodroof, Helen I.
Campbell, David G.
Gourlay, Robert
Burchell, Lynn
Walden, Helen
Macartney, Thomas J.
Deak, Maria
Knebel, Axel
Alessi, Dario R.
Muqit, Miratul M. K.
author_facet Kondapalli, Chandana
Kazlauskaite, Agne
Zhang, Ning
Woodroof, Helen I.
Campbell, David G.
Gourlay, Robert
Burchell, Lynn
Walden, Helen
Macartney, Thomas J.
Deak, Maria
Knebel, Axel
Alessi, Dario R.
Muqit, Miratul M. K.
author_sort Kondapalli, Chandana
collection PubMed
description Missense mutations in PTEN-induced kinase 1 (PINK1) cause autosomal-recessive inherited Parkinson's disease (PD). We have exploited our recent discovery that recombinant insect PINK1 is catalytically active to test whether PINK1 directly phosphorylates 15 proteins encoded by PD-associated genes as well as proteins reported to bind PINK1. We have discovered that insect PINK1 efficiently phosphorylates only one of these proteins, namely the E3 ligase Parkin. We have mapped the phosphorylation site to a highly conserved residue within the Ubl domain of Parkin at Ser(65). We show that human PINK1 is specifically activated by mitochondrial membrane potential (Δψm) depolarization, enabling it to phosphorylate Parkin at Ser(65). We further show that phosphorylation of Parkin at Ser(65) leads to marked activation of its E3 ligase activity that is prevented by mutation of Ser(65) or inactivation of PINK1. We provide evidence that once activated, PINK1 autophosphorylates at several residues, including Thr(257), which is accompanied by an electrophoretic mobility band-shift. These results provide the first evidence that PINK1 is activated following Δψm depolarization and suggest that PINK1 directly phosphorylates and activates Parkin. Our findings indicate that monitoring phosphorylation of Parkin at Ser(65) and/or PINK1 at Thr(257) represent the first biomarkers for examining activity of the PINK1-Parkin signalling pathway in vivo. Our findings also suggest that small molecule activators of Parkin that mimic the effect of PINK1 phosphorylation may confer therapeutic benefit for PD.
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spelling pubmed-33767382012-06-21 PINK1 is activated by mitochondrial membrane potential depolarization and stimulates Parkin E3 ligase activity by phosphorylating Serine 65 Kondapalli, Chandana Kazlauskaite, Agne Zhang, Ning Woodroof, Helen I. Campbell, David G. Gourlay, Robert Burchell, Lynn Walden, Helen Macartney, Thomas J. Deak, Maria Knebel, Axel Alessi, Dario R. Muqit, Miratul M. K. Open Biol Research Missense mutations in PTEN-induced kinase 1 (PINK1) cause autosomal-recessive inherited Parkinson's disease (PD). We have exploited our recent discovery that recombinant insect PINK1 is catalytically active to test whether PINK1 directly phosphorylates 15 proteins encoded by PD-associated genes as well as proteins reported to bind PINK1. We have discovered that insect PINK1 efficiently phosphorylates only one of these proteins, namely the E3 ligase Parkin. We have mapped the phosphorylation site to a highly conserved residue within the Ubl domain of Parkin at Ser(65). We show that human PINK1 is specifically activated by mitochondrial membrane potential (Δψm) depolarization, enabling it to phosphorylate Parkin at Ser(65). We further show that phosphorylation of Parkin at Ser(65) leads to marked activation of its E3 ligase activity that is prevented by mutation of Ser(65) or inactivation of PINK1. We provide evidence that once activated, PINK1 autophosphorylates at several residues, including Thr(257), which is accompanied by an electrophoretic mobility band-shift. These results provide the first evidence that PINK1 is activated following Δψm depolarization and suggest that PINK1 directly phosphorylates and activates Parkin. Our findings indicate that monitoring phosphorylation of Parkin at Ser(65) and/or PINK1 at Thr(257) represent the first biomarkers for examining activity of the PINK1-Parkin signalling pathway in vivo. Our findings also suggest that small molecule activators of Parkin that mimic the effect of PINK1 phosphorylation may confer therapeutic benefit for PD. The Royal Society 2012-05 /pmc/articles/PMC3376738/ /pubmed/22724072 http://dx.doi.org/10.1098/rsob.120080 Text en http://creativecommons.org/licenses/by/3.0/ © 2012 The Authors. Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/3.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Kondapalli, Chandana
Kazlauskaite, Agne
Zhang, Ning
Woodroof, Helen I.
Campbell, David G.
Gourlay, Robert
Burchell, Lynn
Walden, Helen
Macartney, Thomas J.
Deak, Maria
Knebel, Axel
Alessi, Dario R.
Muqit, Miratul M. K.
PINK1 is activated by mitochondrial membrane potential depolarization and stimulates Parkin E3 ligase activity by phosphorylating Serine 65
title PINK1 is activated by mitochondrial membrane potential depolarization and stimulates Parkin E3 ligase activity by phosphorylating Serine 65
title_full PINK1 is activated by mitochondrial membrane potential depolarization and stimulates Parkin E3 ligase activity by phosphorylating Serine 65
title_fullStr PINK1 is activated by mitochondrial membrane potential depolarization and stimulates Parkin E3 ligase activity by phosphorylating Serine 65
title_full_unstemmed PINK1 is activated by mitochondrial membrane potential depolarization and stimulates Parkin E3 ligase activity by phosphorylating Serine 65
title_short PINK1 is activated by mitochondrial membrane potential depolarization and stimulates Parkin E3 ligase activity by phosphorylating Serine 65
title_sort pink1 is activated by mitochondrial membrane potential depolarization and stimulates parkin e3 ligase activity by phosphorylating serine 65
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3376738/
https://www.ncbi.nlm.nih.gov/pubmed/22724072
http://dx.doi.org/10.1098/rsob.120080
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