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Binding Specificity of a Novel Cyclo/Maltodextrin-Binding Protein and Its Role in the Cyclodextrin ABC Importer System from Thermoanaerobacterales

Extracellular synthesis of functional cyclodextrins (CDs) as intermediates of starch assimilation is a convenient microbial adaptation to sequester substrates, increase the half-life of the carbon source, carry bioactive compounds, and alleviate chemical toxicity through the formation of CD-guest co...

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Autores principales: Aranda-Caraballo, Jorge, Saenz, Roberto A., López-Zavala, Alonso A., Velazquez-Cruz, Beatriz, Espinosa-Barrera, Laura, Cárdenas-Conejo, Yair, Zárate-Romero, Andrés, Linares-Vergara, Oscar, Osuna-Castro, Juan A., Bonales-Alatorre, Edgar, Centeno-Leija, Sara, Serrano-Posada, Hugo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10458862/
https://www.ncbi.nlm.nih.gov/pubmed/37630332
http://dx.doi.org/10.3390/molecules28166080
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author Aranda-Caraballo, Jorge
Saenz, Roberto A.
López-Zavala, Alonso A.
Velazquez-Cruz, Beatriz
Espinosa-Barrera, Laura
Cárdenas-Conejo, Yair
Zárate-Romero, Andrés
Linares-Vergara, Oscar
Osuna-Castro, Juan A.
Bonales-Alatorre, Edgar
Centeno-Leija, Sara
Serrano-Posada, Hugo
author_facet Aranda-Caraballo, Jorge
Saenz, Roberto A.
López-Zavala, Alonso A.
Velazquez-Cruz, Beatriz
Espinosa-Barrera, Laura
Cárdenas-Conejo, Yair
Zárate-Romero, Andrés
Linares-Vergara, Oscar
Osuna-Castro, Juan A.
Bonales-Alatorre, Edgar
Centeno-Leija, Sara
Serrano-Posada, Hugo
author_sort Aranda-Caraballo, Jorge
collection PubMed
description Extracellular synthesis of functional cyclodextrins (CDs) as intermediates of starch assimilation is a convenient microbial adaptation to sequester substrates, increase the half-life of the carbon source, carry bioactive compounds, and alleviate chemical toxicity through the formation of CD-guest complexes. Bacteria encoding the four steps of the carbohydrate metabolism pathway via cyclodextrins (CM-CD) actively internalize CDs across the microbial membrane via a putative type I ATP-dependent ABC sugar importer system, MdxEFG-(X/MsmX). While the first step of the CM-CD pathway encompasses extracellular starch-active cyclomaltodextrin glucanotransferases (CGTases) to synthesize linear dextrins and CDs, it is the ABC importer system in the second step that is the critical factor in determining which molecules from the CGTase activity will be internalized by the cell. Here, structure-function relationship studies of the cyclo⁄maltodextrin-binding protein MdxE of the MdxEFG-MsmX importer system from Thermoanaerobacter mathranii subsp. mathranii A3 are presented. Calorimetric and fluorescence studies of recombinant MdxE using linear dextrins and CDs showed that although MdxE binds linear dextrins and CDs with high affinity, the open-to-closed conformational change is solely observed after α- and β-CD binding, suggesting that the CM-CD pathway from Thermoanaerobacterales is exclusive for cellular internalization of these molecules. Structural analysis of MdxE coupled with docking simulations showed an overall architecture typically found in sugar-binding proteins (SBPs) that comprised two N- and C-domains linked by three small hinge regions, including the conserved aromatic triad Tyr193/Trp269/Trp378 in the C-domain and Phe87 in the N-domain involved in CD recognition and stabilization. Structural bioinformatic analysis of the entire MdxFG-MsmX importer system provided further insights into the binding, internalization, and delivery mechanisms of CDs. Hence, while the MdxE-CD complex couples to the permease subunits MdxFG to deliver the CD into the transmembrane channel, the dimerization of the cytoplasmatic promiscuous ATPase MsmX triggers active transport into the cytoplasm. This research provides the first results on a novel thermofunctional SBP and its role in the internalization of CDs in extremely thermophilic bacteria.
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spelling pubmed-104588622023-08-27 Binding Specificity of a Novel Cyclo/Maltodextrin-Binding Protein and Its Role in the Cyclodextrin ABC Importer System from Thermoanaerobacterales Aranda-Caraballo, Jorge Saenz, Roberto A. López-Zavala, Alonso A. Velazquez-Cruz, Beatriz Espinosa-Barrera, Laura Cárdenas-Conejo, Yair Zárate-Romero, Andrés Linares-Vergara, Oscar Osuna-Castro, Juan A. Bonales-Alatorre, Edgar Centeno-Leija, Sara Serrano-Posada, Hugo Molecules Article Extracellular synthesis of functional cyclodextrins (CDs) as intermediates of starch assimilation is a convenient microbial adaptation to sequester substrates, increase the half-life of the carbon source, carry bioactive compounds, and alleviate chemical toxicity through the formation of CD-guest complexes. Bacteria encoding the four steps of the carbohydrate metabolism pathway via cyclodextrins (CM-CD) actively internalize CDs across the microbial membrane via a putative type I ATP-dependent ABC sugar importer system, MdxEFG-(X/MsmX). While the first step of the CM-CD pathway encompasses extracellular starch-active cyclomaltodextrin glucanotransferases (CGTases) to synthesize linear dextrins and CDs, it is the ABC importer system in the second step that is the critical factor in determining which molecules from the CGTase activity will be internalized by the cell. Here, structure-function relationship studies of the cyclo⁄maltodextrin-binding protein MdxE of the MdxEFG-MsmX importer system from Thermoanaerobacter mathranii subsp. mathranii A3 are presented. Calorimetric and fluorescence studies of recombinant MdxE using linear dextrins and CDs showed that although MdxE binds linear dextrins and CDs with high affinity, the open-to-closed conformational change is solely observed after α- and β-CD binding, suggesting that the CM-CD pathway from Thermoanaerobacterales is exclusive for cellular internalization of these molecules. Structural analysis of MdxE coupled with docking simulations showed an overall architecture typically found in sugar-binding proteins (SBPs) that comprised two N- and C-domains linked by three small hinge regions, including the conserved aromatic triad Tyr193/Trp269/Trp378 in the C-domain and Phe87 in the N-domain involved in CD recognition and stabilization. Structural bioinformatic analysis of the entire MdxFG-MsmX importer system provided further insights into the binding, internalization, and delivery mechanisms of CDs. Hence, while the MdxE-CD complex couples to the permease subunits MdxFG to deliver the CD into the transmembrane channel, the dimerization of the cytoplasmatic promiscuous ATPase MsmX triggers active transport into the cytoplasm. This research provides the first results on a novel thermofunctional SBP and its role in the internalization of CDs in extremely thermophilic bacteria. MDPI 2023-08-16 /pmc/articles/PMC10458862/ /pubmed/37630332 http://dx.doi.org/10.3390/molecules28166080 Text en © 2023 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
Aranda-Caraballo, Jorge
Saenz, Roberto A.
López-Zavala, Alonso A.
Velazquez-Cruz, Beatriz
Espinosa-Barrera, Laura
Cárdenas-Conejo, Yair
Zárate-Romero, Andrés
Linares-Vergara, Oscar
Osuna-Castro, Juan A.
Bonales-Alatorre, Edgar
Centeno-Leija, Sara
Serrano-Posada, Hugo
Binding Specificity of a Novel Cyclo/Maltodextrin-Binding Protein and Its Role in the Cyclodextrin ABC Importer System from Thermoanaerobacterales
title Binding Specificity of a Novel Cyclo/Maltodextrin-Binding Protein and Its Role in the Cyclodextrin ABC Importer System from Thermoanaerobacterales
title_full Binding Specificity of a Novel Cyclo/Maltodextrin-Binding Protein and Its Role in the Cyclodextrin ABC Importer System from Thermoanaerobacterales
title_fullStr Binding Specificity of a Novel Cyclo/Maltodextrin-Binding Protein and Its Role in the Cyclodextrin ABC Importer System from Thermoanaerobacterales
title_full_unstemmed Binding Specificity of a Novel Cyclo/Maltodextrin-Binding Protein and Its Role in the Cyclodextrin ABC Importer System from Thermoanaerobacterales
title_short Binding Specificity of a Novel Cyclo/Maltodextrin-Binding Protein and Its Role in the Cyclodextrin ABC Importer System from Thermoanaerobacterales
title_sort binding specificity of a novel cyclo/maltodextrin-binding protein and its role in the cyclodextrin abc importer system from thermoanaerobacterales
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10458862/
https://www.ncbi.nlm.nih.gov/pubmed/37630332
http://dx.doi.org/10.3390/molecules28166080
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