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Divergent Effects of G2019S and R1441C LRRK2 Mutations on LRRK2 and Rab10 Phosphorylations in Mouse Tissues

Mutations in LRRK2 cause familial Parkinson’s disease and common variants increase disease risk. LRRK2 kinase activity and cellular localization are tightly regulated by phosphorylation of key residues, primarily Ser1292 and Ser935, which impacts downstream phosphorylation of its substrates, among w...

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Autores principales: Iannotta, Lucia, Biosa, Alice, Kluss, Jillian H., Tombesi, Giulia, Kaganovich, Alice, Cogo, Susanna, Plotegher, Nicoletta, Civiero, Laura, Lobbestael, Evy, Baekelandt, Veerle, Cookson, Mark R., Greggio, Elisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7690595/
https://www.ncbi.nlm.nih.gov/pubmed/33105882
http://dx.doi.org/10.3390/cells9112344
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author Iannotta, Lucia
Biosa, Alice
Kluss, Jillian H.
Tombesi, Giulia
Kaganovich, Alice
Cogo, Susanna
Plotegher, Nicoletta
Civiero, Laura
Lobbestael, Evy
Baekelandt, Veerle
Cookson, Mark R.
Greggio, Elisa
author_facet Iannotta, Lucia
Biosa, Alice
Kluss, Jillian H.
Tombesi, Giulia
Kaganovich, Alice
Cogo, Susanna
Plotegher, Nicoletta
Civiero, Laura
Lobbestael, Evy
Baekelandt, Veerle
Cookson, Mark R.
Greggio, Elisa
author_sort Iannotta, Lucia
collection PubMed
description Mutations in LRRK2 cause familial Parkinson’s disease and common variants increase disease risk. LRRK2 kinase activity and cellular localization are tightly regulated by phosphorylation of key residues, primarily Ser1292 and Ser935, which impacts downstream phosphorylation of its substrates, among which Rab10. A comprehensive characterization of LRRK2 activity and phosphorylation in brain as a function of age and mutations is missing. Here, we monitored Ser935 and Ser1292 phosphorylation in midbrain, striatum, and cortex of 1, 6, and 12 months-old mice carrying G2019S and R1441C mutations or murine bacterial artificial chromosome (BAC)-Lrrk2-G2019S. We observed that G2019S and, at a greater extent, R1441C brains display decreased phospho-Ser935, while Ser1292 autophosphorylation increased in G2019S but not in R1441C brain, lung, and kidney compared to wild-type. Further, Rab10 phosphorylation, is elevated in R1441C carrying mice, indicating that the effect of LRRK2 mutations on substrate phosphorylation is not generalizable. In BAC-Lrrk2-G2019S striatum and midbrain, Rab10 phosphorylation, but not Ser1292 autophosphorylation, decreases at 12-months, pointing to autophosphorylation and substrate phosphorylation as uncoupled events. Taken together, our study provides novel evidence that LRRK2 phosphorylation in mouse brain is differentially impacted by mutations, brain area, and age, with important implications as diagnostic markers of disease progression and stratification.
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spelling pubmed-76905952020-11-27 Divergent Effects of G2019S and R1441C LRRK2 Mutations on LRRK2 and Rab10 Phosphorylations in Mouse Tissues Iannotta, Lucia Biosa, Alice Kluss, Jillian H. Tombesi, Giulia Kaganovich, Alice Cogo, Susanna Plotegher, Nicoletta Civiero, Laura Lobbestael, Evy Baekelandt, Veerle Cookson, Mark R. Greggio, Elisa Cells Article Mutations in LRRK2 cause familial Parkinson’s disease and common variants increase disease risk. LRRK2 kinase activity and cellular localization are tightly regulated by phosphorylation of key residues, primarily Ser1292 and Ser935, which impacts downstream phosphorylation of its substrates, among which Rab10. A comprehensive characterization of LRRK2 activity and phosphorylation in brain as a function of age and mutations is missing. Here, we monitored Ser935 and Ser1292 phosphorylation in midbrain, striatum, and cortex of 1, 6, and 12 months-old mice carrying G2019S and R1441C mutations or murine bacterial artificial chromosome (BAC)-Lrrk2-G2019S. We observed that G2019S and, at a greater extent, R1441C brains display decreased phospho-Ser935, while Ser1292 autophosphorylation increased in G2019S but not in R1441C brain, lung, and kidney compared to wild-type. Further, Rab10 phosphorylation, is elevated in R1441C carrying mice, indicating that the effect of LRRK2 mutations on substrate phosphorylation is not generalizable. In BAC-Lrrk2-G2019S striatum and midbrain, Rab10 phosphorylation, but not Ser1292 autophosphorylation, decreases at 12-months, pointing to autophosphorylation and substrate phosphorylation as uncoupled events. Taken together, our study provides novel evidence that LRRK2 phosphorylation in mouse brain is differentially impacted by mutations, brain area, and age, with important implications as diagnostic markers of disease progression and stratification. MDPI 2020-10-22 /pmc/articles/PMC7690595/ /pubmed/33105882 http://dx.doi.org/10.3390/cells9112344 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Iannotta, Lucia
Biosa, Alice
Kluss, Jillian H.
Tombesi, Giulia
Kaganovich, Alice
Cogo, Susanna
Plotegher, Nicoletta
Civiero, Laura
Lobbestael, Evy
Baekelandt, Veerle
Cookson, Mark R.
Greggio, Elisa
Divergent Effects of G2019S and R1441C LRRK2 Mutations on LRRK2 and Rab10 Phosphorylations in Mouse Tissues
title Divergent Effects of G2019S and R1441C LRRK2 Mutations on LRRK2 and Rab10 Phosphorylations in Mouse Tissues
title_full Divergent Effects of G2019S and R1441C LRRK2 Mutations on LRRK2 and Rab10 Phosphorylations in Mouse Tissues
title_fullStr Divergent Effects of G2019S and R1441C LRRK2 Mutations on LRRK2 and Rab10 Phosphorylations in Mouse Tissues
title_full_unstemmed Divergent Effects of G2019S and R1441C LRRK2 Mutations on LRRK2 and Rab10 Phosphorylations in Mouse Tissues
title_short Divergent Effects of G2019S and R1441C LRRK2 Mutations on LRRK2 and Rab10 Phosphorylations in Mouse Tissues
title_sort divergent effects of g2019s and r1441c lrrk2 mutations on lrrk2 and rab10 phosphorylations in mouse tissues
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7690595/
https://www.ncbi.nlm.nih.gov/pubmed/33105882
http://dx.doi.org/10.3390/cells9112344
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