Cargando…

Regulatory Aspects of the Vacuolar CAT2 Arginine Transporter of S. lycopersicum: Role of Osmotic Pressure and Cations

Many proteins are localized at the vacuolar membrane, but most of them are still poorly described, due to the inaccessibility of this membrane from the extracellular environment. This work focused on the characterization of the CAT2 transporter from S. lycopersicum (SlCAT2) that was previously overe...

Descripción completa

Detalles Bibliográficos
Autores principales: Cosco, Jessica, Regina, Teresa M. R., Scalise, Mariafrancesca, Galluccio, Michele, Indiveri, Cesare
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413183/
https://www.ncbi.nlm.nih.gov/pubmed/30791488
http://dx.doi.org/10.3390/ijms20040906
_version_ 1783402777763905536
author Cosco, Jessica
Regina, Teresa M. R.
Scalise, Mariafrancesca
Galluccio, Michele
Indiveri, Cesare
author_facet Cosco, Jessica
Regina, Teresa M. R.
Scalise, Mariafrancesca
Galluccio, Michele
Indiveri, Cesare
author_sort Cosco, Jessica
collection PubMed
description Many proteins are localized at the vacuolar membrane, but most of them are still poorly described, due to the inaccessibility of this membrane from the extracellular environment. This work focused on the characterization of the CAT2 transporter from S. lycopersicum (SlCAT2) that was previously overexpressed in E. coli and reconstituted in proteoliposomes for transport assay as [(3)H]Arg uptake. The orientation of the reconstituted transporter has been attempted and current data support the hypothesis that the protein is inserted in the liposome in the same orientation as in the vacuole. SlCAT2 activity was dependent on the pH, with an optimum at pH 7.5. SlCAT2 transport activity was stimulated by the increase of internal osmolality from 0 to 175 mOsmol while the activity was inhibited by the increase of external osmolality. K(+), Na(+), and Mg(2+) present on the external side of proteoliposomes at physiological concentrations, inhibited the transport activity; differently, the cations had no effect when included in the internal proteoliposome compartment. This data highlighted an asymmetric regulation of SlCAT2. Cholesteryl hemisuccinate, included in the proteoliposomal membrane, stimulated the SlCAT2 transport activity. The homology model of the protein was built using, as a template, the 3D structure of the amino acid transporter GkApcT. Putative substrate binding residues and cholesterol binding domains were proposed. Altogether, the described results open new perspectives for studying the response of SlCAT2 and, in general, of plant vacuolar transporters to metabolic and environmental changes.
format Online
Article
Text
id pubmed-6413183
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-64131832019-03-29 Regulatory Aspects of the Vacuolar CAT2 Arginine Transporter of S. lycopersicum: Role of Osmotic Pressure and Cations Cosco, Jessica Regina, Teresa M. R. Scalise, Mariafrancesca Galluccio, Michele Indiveri, Cesare Int J Mol Sci Article Many proteins are localized at the vacuolar membrane, but most of them are still poorly described, due to the inaccessibility of this membrane from the extracellular environment. This work focused on the characterization of the CAT2 transporter from S. lycopersicum (SlCAT2) that was previously overexpressed in E. coli and reconstituted in proteoliposomes for transport assay as [(3)H]Arg uptake. The orientation of the reconstituted transporter has been attempted and current data support the hypothesis that the protein is inserted in the liposome in the same orientation as in the vacuole. SlCAT2 activity was dependent on the pH, with an optimum at pH 7.5. SlCAT2 transport activity was stimulated by the increase of internal osmolality from 0 to 175 mOsmol while the activity was inhibited by the increase of external osmolality. K(+), Na(+), and Mg(2+) present on the external side of proteoliposomes at physiological concentrations, inhibited the transport activity; differently, the cations had no effect when included in the internal proteoliposome compartment. This data highlighted an asymmetric regulation of SlCAT2. Cholesteryl hemisuccinate, included in the proteoliposomal membrane, stimulated the SlCAT2 transport activity. The homology model of the protein was built using, as a template, the 3D structure of the amino acid transporter GkApcT. Putative substrate binding residues and cholesterol binding domains were proposed. Altogether, the described results open new perspectives for studying the response of SlCAT2 and, in general, of plant vacuolar transporters to metabolic and environmental changes. MDPI 2019-02-19 /pmc/articles/PMC6413183/ /pubmed/30791488 http://dx.doi.org/10.3390/ijms20040906 Text en © 2019 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
Cosco, Jessica
Regina, Teresa M. R.
Scalise, Mariafrancesca
Galluccio, Michele
Indiveri, Cesare
Regulatory Aspects of the Vacuolar CAT2 Arginine Transporter of S. lycopersicum: Role of Osmotic Pressure and Cations
title Regulatory Aspects of the Vacuolar CAT2 Arginine Transporter of S. lycopersicum: Role of Osmotic Pressure and Cations
title_full Regulatory Aspects of the Vacuolar CAT2 Arginine Transporter of S. lycopersicum: Role of Osmotic Pressure and Cations
title_fullStr Regulatory Aspects of the Vacuolar CAT2 Arginine Transporter of S. lycopersicum: Role of Osmotic Pressure and Cations
title_full_unstemmed Regulatory Aspects of the Vacuolar CAT2 Arginine Transporter of S. lycopersicum: Role of Osmotic Pressure and Cations
title_short Regulatory Aspects of the Vacuolar CAT2 Arginine Transporter of S. lycopersicum: Role of Osmotic Pressure and Cations
title_sort regulatory aspects of the vacuolar cat2 arginine transporter of s. lycopersicum: role of osmotic pressure and cations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413183/
https://www.ncbi.nlm.nih.gov/pubmed/30791488
http://dx.doi.org/10.3390/ijms20040906
work_keys_str_mv AT coscojessica regulatoryaspectsofthevacuolarcat2argininetransporterofslycopersicumroleofosmoticpressureandcations
AT reginateresamr regulatoryaspectsofthevacuolarcat2argininetransporterofslycopersicumroleofosmoticpressureandcations
AT scalisemariafrancesca regulatoryaspectsofthevacuolarcat2argininetransporterofslycopersicumroleofosmoticpressureandcations
AT gallucciomichele regulatoryaspectsofthevacuolarcat2argininetransporterofslycopersicumroleofosmoticpressureandcations
AT indivericesare regulatoryaspectsofthevacuolarcat2argininetransporterofslycopersicumroleofosmoticpressureandcations