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A feed-forward pathway drives LRRK2 kinase membrane recruitment and activation

Activating mutations in the leucine-rich repeat kinase 2 (LRRK2) cause Parkinson’s disease, and previously we showed that activated LRRK2 phosphorylates a subset of Rab GTPases (Steger et al., 2017). Moreover, Golgi-associated Rab29 can recruit LRRK2 to the surface of the Golgi and activate it there...

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Autores principales: Vides, Edmundo G, Adhikari, Ayan, Chiang, Claire Y, Lis, Pawel, Purlyte, Elena, Limouse, Charles, Shumate, Justin L, Spínola-Lasso, Elena, Dhekne, Herschel S, Alessi, Dario R, Pfeffer, Suzanne R
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9576273/
https://www.ncbi.nlm.nih.gov/pubmed/36149401
http://dx.doi.org/10.7554/eLife.79771
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author Vides, Edmundo G
Adhikari, Ayan
Chiang, Claire Y
Lis, Pawel
Purlyte, Elena
Limouse, Charles
Shumate, Justin L
Spínola-Lasso, Elena
Dhekne, Herschel S
Alessi, Dario R
Pfeffer, Suzanne R
author_facet Vides, Edmundo G
Adhikari, Ayan
Chiang, Claire Y
Lis, Pawel
Purlyte, Elena
Limouse, Charles
Shumate, Justin L
Spínola-Lasso, Elena
Dhekne, Herschel S
Alessi, Dario R
Pfeffer, Suzanne R
author_sort Vides, Edmundo G
collection PubMed
description Activating mutations in the leucine-rich repeat kinase 2 (LRRK2) cause Parkinson’s disease, and previously we showed that activated LRRK2 phosphorylates a subset of Rab GTPases (Steger et al., 2017). Moreover, Golgi-associated Rab29 can recruit LRRK2 to the surface of the Golgi and activate it there for both auto- and Rab substrate phosphorylation. Here, we define the precise Rab29 binding region of the LRRK2 Armadillo domain between residues 360–450 and show that this domain, termed ‘site #1,’ can also bind additional LRRK2 substrates, Rab8A and Rab10. Moreover, we identify a distinct, N-terminal, higher-affinity interaction interface between LRRK2 phosphorylated Rab8 and Rab10 termed ‘site #2’ that can retain LRRK2 on membranes in cells to catalyze multiple, subsequent phosphorylation events. Kinase inhibitor washout experiments demonstrate that rapid recovery of kinase activity in cells depends on the ability of LRRK2 to associate with phosphorylated Rab proteins, and phosphorylated Rab8A stimulates LRRK2 phosphorylation of Rab10 in vitro. Reconstitution of purified LRRK2 recruitment onto planar lipid bilayers decorated with Rab10 protein demonstrates cooperative association of only active LRRK2 with phospho-Rab10-containing membrane surfaces. These experiments reveal a feed-forward pathway that provides spatial control and membrane activation of LRRK2 kinase activity.
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spelling pubmed-95762732022-10-18 A feed-forward pathway drives LRRK2 kinase membrane recruitment and activation Vides, Edmundo G Adhikari, Ayan Chiang, Claire Y Lis, Pawel Purlyte, Elena Limouse, Charles Shumate, Justin L Spínola-Lasso, Elena Dhekne, Herschel S Alessi, Dario R Pfeffer, Suzanne R eLife Biochemistry and Chemical Biology Activating mutations in the leucine-rich repeat kinase 2 (LRRK2) cause Parkinson’s disease, and previously we showed that activated LRRK2 phosphorylates a subset of Rab GTPases (Steger et al., 2017). Moreover, Golgi-associated Rab29 can recruit LRRK2 to the surface of the Golgi and activate it there for both auto- and Rab substrate phosphorylation. Here, we define the precise Rab29 binding region of the LRRK2 Armadillo domain between residues 360–450 and show that this domain, termed ‘site #1,’ can also bind additional LRRK2 substrates, Rab8A and Rab10. Moreover, we identify a distinct, N-terminal, higher-affinity interaction interface between LRRK2 phosphorylated Rab8 and Rab10 termed ‘site #2’ that can retain LRRK2 on membranes in cells to catalyze multiple, subsequent phosphorylation events. Kinase inhibitor washout experiments demonstrate that rapid recovery of kinase activity in cells depends on the ability of LRRK2 to associate with phosphorylated Rab proteins, and phosphorylated Rab8A stimulates LRRK2 phosphorylation of Rab10 in vitro. Reconstitution of purified LRRK2 recruitment onto planar lipid bilayers decorated with Rab10 protein demonstrates cooperative association of only active LRRK2 with phospho-Rab10-containing membrane surfaces. These experiments reveal a feed-forward pathway that provides spatial control and membrane activation of LRRK2 kinase activity. eLife Sciences Publications, Ltd 2022-09-23 /pmc/articles/PMC9576273/ /pubmed/36149401 http://dx.doi.org/10.7554/eLife.79771 Text en © 2022, Vides et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Biochemistry and Chemical Biology
Vides, Edmundo G
Adhikari, Ayan
Chiang, Claire Y
Lis, Pawel
Purlyte, Elena
Limouse, Charles
Shumate, Justin L
Spínola-Lasso, Elena
Dhekne, Herschel S
Alessi, Dario R
Pfeffer, Suzanne R
A feed-forward pathway drives LRRK2 kinase membrane recruitment and activation
title A feed-forward pathway drives LRRK2 kinase membrane recruitment and activation
title_full A feed-forward pathway drives LRRK2 kinase membrane recruitment and activation
title_fullStr A feed-forward pathway drives LRRK2 kinase membrane recruitment and activation
title_full_unstemmed A feed-forward pathway drives LRRK2 kinase membrane recruitment and activation
title_short A feed-forward pathway drives LRRK2 kinase membrane recruitment and activation
title_sort feed-forward pathway drives lrrk2 kinase membrane recruitment and activation
topic Biochemistry and Chemical Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9576273/
https://www.ncbi.nlm.nih.gov/pubmed/36149401
http://dx.doi.org/10.7554/eLife.79771
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