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The Role of Membrane Affinity and Binding Modes in Alpha-Synuclein Regulation of Vesicle Release and Trafficking

Alpha-synuclein is a presynaptic protein linked to Parkinson’s disease with a poorly characterized physiological role in regulating the synaptic vesicle cycle. Using RBL-2H3 cells as a model system, we earlier reported that wild-type alpha-synuclein can act as both an inhibitor and a potentiator of...

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Autores principales: Das, Tapojyoti, Ramezani, Meraj, Snead, David, Follmer, Cristian, Chung, Peter, Lee, Ka Yee, Holowka, David A., Baird, Barbara A., Eliezer, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775087/
https://www.ncbi.nlm.nih.gov/pubmed/36551244
http://dx.doi.org/10.3390/biom12121816
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author Das, Tapojyoti
Ramezani, Meraj
Snead, David
Follmer, Cristian
Chung, Peter
Lee, Ka Yee
Holowka, David A.
Baird, Barbara A.
Eliezer, David
author_facet Das, Tapojyoti
Ramezani, Meraj
Snead, David
Follmer, Cristian
Chung, Peter
Lee, Ka Yee
Holowka, David A.
Baird, Barbara A.
Eliezer, David
author_sort Das, Tapojyoti
collection PubMed
description Alpha-synuclein is a presynaptic protein linked to Parkinson’s disease with a poorly characterized physiological role in regulating the synaptic vesicle cycle. Using RBL-2H3 cells as a model system, we earlier reported that wild-type alpha-synuclein can act as both an inhibitor and a potentiator of stimulated exocytosis in a concentration-dependent manner. The inhibitory function is constitutive and depends on membrane binding by the helix-2 region of the lipid-binding domain, while potentiation becomes apparent only at high concentrations. Using structural and functional characterization of conformationally selective mutants via a combination of spectroscopic and cellular assays, we show here that binding affinity for isolated vesicles similar in size to synaptic vesicles is a primary determinant of alpha-synuclein-mediated potentiation of vesicle release. Inhibition of release is sensitive to changes in the region linking the helix-1 and helix-2 regions of the N-terminal lipid-binding domain and may require some degree of coupling between these regions. Potentiation of release likely occurs as a result of alpha-synuclein interactions with undocked vesicles isolated away from the active zone in internal pools. Consistent with this, we observe that alpha-synuclein can disperse vesicles from in vitro clusters organized by condensates of the presynaptic protein synapsin-1.
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spelling pubmed-97750872022-12-23 The Role of Membrane Affinity and Binding Modes in Alpha-Synuclein Regulation of Vesicle Release and Trafficking Das, Tapojyoti Ramezani, Meraj Snead, David Follmer, Cristian Chung, Peter Lee, Ka Yee Holowka, David A. Baird, Barbara A. Eliezer, David Biomolecules Article Alpha-synuclein is a presynaptic protein linked to Parkinson’s disease with a poorly characterized physiological role in regulating the synaptic vesicle cycle. Using RBL-2H3 cells as a model system, we earlier reported that wild-type alpha-synuclein can act as both an inhibitor and a potentiator of stimulated exocytosis in a concentration-dependent manner. The inhibitory function is constitutive and depends on membrane binding by the helix-2 region of the lipid-binding domain, while potentiation becomes apparent only at high concentrations. Using structural and functional characterization of conformationally selective mutants via a combination of spectroscopic and cellular assays, we show here that binding affinity for isolated vesicles similar in size to synaptic vesicles is a primary determinant of alpha-synuclein-mediated potentiation of vesicle release. Inhibition of release is sensitive to changes in the region linking the helix-1 and helix-2 regions of the N-terminal lipid-binding domain and may require some degree of coupling between these regions. Potentiation of release likely occurs as a result of alpha-synuclein interactions with undocked vesicles isolated away from the active zone in internal pools. Consistent with this, we observe that alpha-synuclein can disperse vesicles from in vitro clusters organized by condensates of the presynaptic protein synapsin-1. MDPI 2022-12-05 /pmc/articles/PMC9775087/ /pubmed/36551244 http://dx.doi.org/10.3390/biom12121816 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Das, Tapojyoti
Ramezani, Meraj
Snead, David
Follmer, Cristian
Chung, Peter
Lee, Ka Yee
Holowka, David A.
Baird, Barbara A.
Eliezer, David
The Role of Membrane Affinity and Binding Modes in Alpha-Synuclein Regulation of Vesicle Release and Trafficking
title The Role of Membrane Affinity and Binding Modes in Alpha-Synuclein Regulation of Vesicle Release and Trafficking
title_full The Role of Membrane Affinity and Binding Modes in Alpha-Synuclein Regulation of Vesicle Release and Trafficking
title_fullStr The Role of Membrane Affinity and Binding Modes in Alpha-Synuclein Regulation of Vesicle Release and Trafficking
title_full_unstemmed The Role of Membrane Affinity and Binding Modes in Alpha-Synuclein Regulation of Vesicle Release and Trafficking
title_short The Role of Membrane Affinity and Binding Modes in Alpha-Synuclein Regulation of Vesicle Release and Trafficking
title_sort role of membrane affinity and binding modes in alpha-synuclein regulation of vesicle release and trafficking
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775087/
https://www.ncbi.nlm.nih.gov/pubmed/36551244
http://dx.doi.org/10.3390/biom12121816
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