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Rare Autism-Associated Variants Implicate Syntaxin 1 (STX1 R26Q) Phosphorylation and the Dopamine Transporter (hDAT R51W) in Dopamine Neurotransmission and Behaviors
BACKGROUND: Syntaxin 1 (STX1) is a presynaptic plasma membrane protein that coordinates synaptic vesicle fusion. STX1 also regulates the function of neurotransmitter transporters, including the dopamine (DA) transporter (DAT). The DAT is a membrane protein that controls DA homeostasis through the hi...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4353922/ https://www.ncbi.nlm.nih.gov/pubmed/25774383 http://dx.doi.org/10.1016/j.ebiom.2015.01.007 |
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author | Cartier, Etienne Hamilton, Peter J. Belovich, Andrea N. Shekar, Aparna Campbell, Nicholas G. Saunders, Christine Andreassen, Thorvald F. Gether, Ulrik Veenstra-Vanderweele, Jeremy Sutcliffe, James S. Ulery-Reynolds, Paula G. Erreger, Kevin Matthies, Heinrich J.G. Galli, Aurelio |
author_facet | Cartier, Etienne Hamilton, Peter J. Belovich, Andrea N. Shekar, Aparna Campbell, Nicholas G. Saunders, Christine Andreassen, Thorvald F. Gether, Ulrik Veenstra-Vanderweele, Jeremy Sutcliffe, James S. Ulery-Reynolds, Paula G. Erreger, Kevin Matthies, Heinrich J.G. Galli, Aurelio |
author_sort | Cartier, Etienne |
collection | PubMed |
description | BACKGROUND: Syntaxin 1 (STX1) is a presynaptic plasma membrane protein that coordinates synaptic vesicle fusion. STX1 also regulates the function of neurotransmitter transporters, including the dopamine (DA) transporter (DAT). The DAT is a membrane protein that controls DA homeostasis through the high-affinity re-uptake of synaptically released DA. METHODS: We adopt newly developed animal models and state-of-the-art biophysical techniques to determine the contribution of the identified gene variants to impairments in DA neurotransmission observed in autism spectrum disorder (ASD). OUTCOMES: Here, we characterize two independent autism-associated variants in the genes that encode STX1 and the DAT. We demonstrate that each variant dramatically alters DAT function. We identify molecular mechanisms that converge to inhibit reverse transport of DA and DA-associated behaviors. These mechanisms involve decreased phosphorylation of STX1 at Ser14 mediated by casein kinase 2 as well as a reduction in STX1/DAT interaction. These findings point to STX1/DAT interactions and STX1 phosphorylation as key regulators of DA homeostasis. INTERPRETATION: We determine the molecular identity and the impact of these variants with the intent of defining DA dysfunction and associated behaviors as possible complications of ASD. |
format | Online Article Text |
id | pubmed-4353922 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-43539222015-07-01 Rare Autism-Associated Variants Implicate Syntaxin 1 (STX1 R26Q) Phosphorylation and the Dopamine Transporter (hDAT R51W) in Dopamine Neurotransmission and Behaviors Cartier, Etienne Hamilton, Peter J. Belovich, Andrea N. Shekar, Aparna Campbell, Nicholas G. Saunders, Christine Andreassen, Thorvald F. Gether, Ulrik Veenstra-Vanderweele, Jeremy Sutcliffe, James S. Ulery-Reynolds, Paula G. Erreger, Kevin Matthies, Heinrich J.G. Galli, Aurelio EBioMedicine Original Research Article BACKGROUND: Syntaxin 1 (STX1) is a presynaptic plasma membrane protein that coordinates synaptic vesicle fusion. STX1 also regulates the function of neurotransmitter transporters, including the dopamine (DA) transporter (DAT). The DAT is a membrane protein that controls DA homeostasis through the high-affinity re-uptake of synaptically released DA. METHODS: We adopt newly developed animal models and state-of-the-art biophysical techniques to determine the contribution of the identified gene variants to impairments in DA neurotransmission observed in autism spectrum disorder (ASD). OUTCOMES: Here, we characterize two independent autism-associated variants in the genes that encode STX1 and the DAT. We demonstrate that each variant dramatically alters DAT function. We identify molecular mechanisms that converge to inhibit reverse transport of DA and DA-associated behaviors. These mechanisms involve decreased phosphorylation of STX1 at Ser14 mediated by casein kinase 2 as well as a reduction in STX1/DAT interaction. These findings point to STX1/DAT interactions and STX1 phosphorylation as key regulators of DA homeostasis. INTERPRETATION: We determine the molecular identity and the impact of these variants with the intent of defining DA dysfunction and associated behaviors as possible complications of ASD. Elsevier 2015-01-16 /pmc/articles/PMC4353922/ /pubmed/25774383 http://dx.doi.org/10.1016/j.ebiom.2015.01.007 Text en © 2015 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Original Research Article Cartier, Etienne Hamilton, Peter J. Belovich, Andrea N. Shekar, Aparna Campbell, Nicholas G. Saunders, Christine Andreassen, Thorvald F. Gether, Ulrik Veenstra-Vanderweele, Jeremy Sutcliffe, James S. Ulery-Reynolds, Paula G. Erreger, Kevin Matthies, Heinrich J.G. Galli, Aurelio Rare Autism-Associated Variants Implicate Syntaxin 1 (STX1 R26Q) Phosphorylation and the Dopamine Transporter (hDAT R51W) in Dopamine Neurotransmission and Behaviors |
title | Rare Autism-Associated Variants Implicate Syntaxin 1 (STX1 R26Q) Phosphorylation and the Dopamine Transporter (hDAT R51W) in Dopamine Neurotransmission and Behaviors |
title_full | Rare Autism-Associated Variants Implicate Syntaxin 1 (STX1 R26Q) Phosphorylation and the Dopamine Transporter (hDAT R51W) in Dopamine Neurotransmission and Behaviors |
title_fullStr | Rare Autism-Associated Variants Implicate Syntaxin 1 (STX1 R26Q) Phosphorylation and the Dopamine Transporter (hDAT R51W) in Dopamine Neurotransmission and Behaviors |
title_full_unstemmed | Rare Autism-Associated Variants Implicate Syntaxin 1 (STX1 R26Q) Phosphorylation and the Dopamine Transporter (hDAT R51W) in Dopamine Neurotransmission and Behaviors |
title_short | Rare Autism-Associated Variants Implicate Syntaxin 1 (STX1 R26Q) Phosphorylation and the Dopamine Transporter (hDAT R51W) in Dopamine Neurotransmission and Behaviors |
title_sort | rare autism-associated variants implicate syntaxin 1 (stx1 r26q) phosphorylation and the dopamine transporter (hdat r51w) in dopamine neurotransmission and behaviors |
topic | Original Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4353922/ https://www.ncbi.nlm.nih.gov/pubmed/25774383 http://dx.doi.org/10.1016/j.ebiom.2015.01.007 |
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