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The Cellular Distribution of Serotonin Transporter Is Impeded on Serotonin-Altered Vimentin Network

BACKGROUND: The C-terminus of the serotonin transporter (SERT) contains binding domains for different proteins and is critical for its functional expression. In endogenous and heterologous expression systems, our proteomic and biochemical analysis demonstrated that an intermediate filament, vimentin...

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Autores principales: Ahmed, Billow A., Bukhari, Irfan A., Jeffus, Brandon C., Harney, Justin T., Thyparambil, Sheeno, Ziu, Endrit, Fraer, Mony, Rusch, Nancy J., Zimniak, Piotr, Lupashin, Vladimir, Tang, Dale, Kilic, Fusun
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2648896/
https://www.ncbi.nlm.nih.gov/pubmed/19270731
http://dx.doi.org/10.1371/journal.pone.0004730
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author Ahmed, Billow A.
Bukhari, Irfan A.
Jeffus, Brandon C.
Harney, Justin T.
Thyparambil, Sheeno
Ziu, Endrit
Fraer, Mony
Rusch, Nancy J.
Zimniak, Piotr
Lupashin, Vladimir
Tang, Dale
Kilic, Fusun
author_facet Ahmed, Billow A.
Bukhari, Irfan A.
Jeffus, Brandon C.
Harney, Justin T.
Thyparambil, Sheeno
Ziu, Endrit
Fraer, Mony
Rusch, Nancy J.
Zimniak, Piotr
Lupashin, Vladimir
Tang, Dale
Kilic, Fusun
author_sort Ahmed, Billow A.
collection PubMed
description BACKGROUND: The C-terminus of the serotonin transporter (SERT) contains binding domains for different proteins and is critical for its functional expression. In endogenous and heterologous expression systems, our proteomic and biochemical analysis demonstrated that an intermediate filament, vimentin, binds to the C-terminus of SERT. It has been reported that 5HT-stimulation of cells leads to disassembly and spatial reorientation of vimentin filaments. METHODOLOGY/PRINCIPAL FINDINGS: We tested the impact of 5HT-stimulation on vimentin-SERT association and found that 5HT-stimulation accelerates the translocation of SERT from the plasma membrane via enhancing the level of association between phosphovimentin and SERT. Furthermore a progressive truncation of the C-terminus of SERT was performed to map the vimentin-SERT association domain. Deletion of up to 20, but not 14 amino acids arrested the transporters at intracellular locations. Although, truncation of the last 14 amino acids, did not alter 5HT uptake rates of transporter but abolished its association with vimentin. To understand the involvement of 5HT in phosphovimentin-SERT association from the plasma membrane, we further investigated the six amino acids between Δ14 and Δ20, i.e., the SITPET sequence of SERT. While the triple mutation on the possible kinase action sites, S(611), T(613), and T(616) arrested the transporter at intracellular locations, replacing the residues with aspartic acid one at a time altered neither the 5HT uptake rates nor the vimentin association of these mutants. However, replacing the three target sites with alanine, either simultaneously or one at a time, had no significant effect on 5HT uptake rates or the vimentin association with transporter. CONCLUSIONS/SIGNIFICANCE: Based on our findings, we propose that phosphate modification of the SITPET sequence differentially, one at a time exposes the vimentin binding domain on the C-terminus of SERT. Conversely, following 5HT stimulation, the association between vimentin-SERT is enhanced which changes the cellular distribution of SERT on an altered vimentin network.
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spelling pubmed-26488962009-03-09 The Cellular Distribution of Serotonin Transporter Is Impeded on Serotonin-Altered Vimentin Network Ahmed, Billow A. Bukhari, Irfan A. Jeffus, Brandon C. Harney, Justin T. Thyparambil, Sheeno Ziu, Endrit Fraer, Mony Rusch, Nancy J. Zimniak, Piotr Lupashin, Vladimir Tang, Dale Kilic, Fusun PLoS One Research Article BACKGROUND: The C-terminus of the serotonin transporter (SERT) contains binding domains for different proteins and is critical for its functional expression. In endogenous and heterologous expression systems, our proteomic and biochemical analysis demonstrated that an intermediate filament, vimentin, binds to the C-terminus of SERT. It has been reported that 5HT-stimulation of cells leads to disassembly and spatial reorientation of vimentin filaments. METHODOLOGY/PRINCIPAL FINDINGS: We tested the impact of 5HT-stimulation on vimentin-SERT association and found that 5HT-stimulation accelerates the translocation of SERT from the plasma membrane via enhancing the level of association between phosphovimentin and SERT. Furthermore a progressive truncation of the C-terminus of SERT was performed to map the vimentin-SERT association domain. Deletion of up to 20, but not 14 amino acids arrested the transporters at intracellular locations. Although, truncation of the last 14 amino acids, did not alter 5HT uptake rates of transporter but abolished its association with vimentin. To understand the involvement of 5HT in phosphovimentin-SERT association from the plasma membrane, we further investigated the six amino acids between Δ14 and Δ20, i.e., the SITPET sequence of SERT. While the triple mutation on the possible kinase action sites, S(611), T(613), and T(616) arrested the transporter at intracellular locations, replacing the residues with aspartic acid one at a time altered neither the 5HT uptake rates nor the vimentin association of these mutants. However, replacing the three target sites with alanine, either simultaneously or one at a time, had no significant effect on 5HT uptake rates or the vimentin association with transporter. CONCLUSIONS/SIGNIFICANCE: Based on our findings, we propose that phosphate modification of the SITPET sequence differentially, one at a time exposes the vimentin binding domain on the C-terminus of SERT. Conversely, following 5HT stimulation, the association between vimentin-SERT is enhanced which changes the cellular distribution of SERT on an altered vimentin network. Public Library of Science 2009-03-09 /pmc/articles/PMC2648896/ /pubmed/19270731 http://dx.doi.org/10.1371/journal.pone.0004730 Text en Ahmed et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ahmed, Billow A.
Bukhari, Irfan A.
Jeffus, Brandon C.
Harney, Justin T.
Thyparambil, Sheeno
Ziu, Endrit
Fraer, Mony
Rusch, Nancy J.
Zimniak, Piotr
Lupashin, Vladimir
Tang, Dale
Kilic, Fusun
The Cellular Distribution of Serotonin Transporter Is Impeded on Serotonin-Altered Vimentin Network
title The Cellular Distribution of Serotonin Transporter Is Impeded on Serotonin-Altered Vimentin Network
title_full The Cellular Distribution of Serotonin Transporter Is Impeded on Serotonin-Altered Vimentin Network
title_fullStr The Cellular Distribution of Serotonin Transporter Is Impeded on Serotonin-Altered Vimentin Network
title_full_unstemmed The Cellular Distribution of Serotonin Transporter Is Impeded on Serotonin-Altered Vimentin Network
title_short The Cellular Distribution of Serotonin Transporter Is Impeded on Serotonin-Altered Vimentin Network
title_sort cellular distribution of serotonin transporter is impeded on serotonin-altered vimentin network
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2648896/
https://www.ncbi.nlm.nih.gov/pubmed/19270731
http://dx.doi.org/10.1371/journal.pone.0004730
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