Cargando…

Mining for novel cyclomaltodextrin glucanotransferases unravels the carbohydrate metabolism pathway via cyclodextrins in Thermoanaerobacterales

Carbohydrate metabolism via cyclodextrins (CM-CD) is an uncommon starch-converting pathway that thoroughly depends on extracellular cyclomaltodextrin glucanotransferases (CGTases) to transform the surrounding starch substrate to α-(1,4)-linked oligosaccharides and cyclodextrins (CDs). The CM-CD path...

Descripción completa

Detalles Bibliográficos
Autores principales: Centeno-Leija, Sara, Espinosa-Barrera, Laura, Velazquez-Cruz, Beatriz, Cárdenas-Conejo, Yair, Virgen-Ortíz, Raúl, Valencia-Cruz, Georgina, Saenz, Roberto A., Marín-Tovar, Yerli, Gómez-Manzo, Saúl, Hernández-Ochoa, Beatriz, Rocha-Ramirez, Luz María, Zataraín-Palacios, Rocío, Osuna-Castro, Juan A., López-Munguía, Agustín, Serrano-Posada, Hugo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8760340/
https://www.ncbi.nlm.nih.gov/pubmed/35031648
http://dx.doi.org/10.1038/s41598-021-04569-x
_version_ 1784633299010846720
author Centeno-Leija, Sara
Espinosa-Barrera, Laura
Velazquez-Cruz, Beatriz
Cárdenas-Conejo, Yair
Virgen-Ortíz, Raúl
Valencia-Cruz, Georgina
Saenz, Roberto A.
Marín-Tovar, Yerli
Gómez-Manzo, Saúl
Hernández-Ochoa, Beatriz
Rocha-Ramirez, Luz María
Zataraín-Palacios, Rocío
Osuna-Castro, Juan A.
López-Munguía, Agustín
Serrano-Posada, Hugo
author_facet Centeno-Leija, Sara
Espinosa-Barrera, Laura
Velazquez-Cruz, Beatriz
Cárdenas-Conejo, Yair
Virgen-Ortíz, Raúl
Valencia-Cruz, Georgina
Saenz, Roberto A.
Marín-Tovar, Yerli
Gómez-Manzo, Saúl
Hernández-Ochoa, Beatriz
Rocha-Ramirez, Luz María
Zataraín-Palacios, Rocío
Osuna-Castro, Juan A.
López-Munguía, Agustín
Serrano-Posada, Hugo
author_sort Centeno-Leija, Sara
collection PubMed
description Carbohydrate metabolism via cyclodextrins (CM-CD) is an uncommon starch-converting pathway that thoroughly depends on extracellular cyclomaltodextrin glucanotransferases (CGTases) to transform the surrounding starch substrate to α-(1,4)-linked oligosaccharides and cyclodextrins (CDs). The CM-CD pathway has emerged as a convenient microbial adaptation to thrive under extreme temperatures, as CDs are functional amphipathic toroids with higher heat-resistant values than linear dextrins. Nevertheless, although the CM-CD pathway has been described in a few mesophilic bacteria and archaea, it remains obscure in extremely thermophilic prokaryotes (T(opt) ≥ 70 °C). Here, a new monophyletic group of CGTases with an exceptional three-domain ABC architecture was detected by (meta)genome mining of extremely thermophilic Thermoanaerobacterales living in a wide variety of hot starch-poor environments on Earth. Functional studies of a representative member, CldA, showed a maximum activity in a thermoacidophilic range (pH 4.0 and 80 °C) with remarkable product diversification that yielded a mixture of α:β:γ-CDs (34:62:4) from soluble starch, as well as G3–G7 linear dextrins and fermentable sugars as the primary products. Together, comparative genomics and predictive functional analysis, combined with data of the functionally characterized key proteins of the gene clusters encoding CGTases, revealed the CM-CD pathway in Thermoanaerobacterales and showed that it is involved in the synthesis, transportation, degradation, and metabolic assimilation of CDs.
format Online
Article
Text
id pubmed-8760340
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-87603402022-01-18 Mining for novel cyclomaltodextrin glucanotransferases unravels the carbohydrate metabolism pathway via cyclodextrins in Thermoanaerobacterales Centeno-Leija, Sara Espinosa-Barrera, Laura Velazquez-Cruz, Beatriz Cárdenas-Conejo, Yair Virgen-Ortíz, Raúl Valencia-Cruz, Georgina Saenz, Roberto A. Marín-Tovar, Yerli Gómez-Manzo, Saúl Hernández-Ochoa, Beatriz Rocha-Ramirez, Luz María Zataraín-Palacios, Rocío Osuna-Castro, Juan A. López-Munguía, Agustín Serrano-Posada, Hugo Sci Rep Article Carbohydrate metabolism via cyclodextrins (CM-CD) is an uncommon starch-converting pathway that thoroughly depends on extracellular cyclomaltodextrin glucanotransferases (CGTases) to transform the surrounding starch substrate to α-(1,4)-linked oligosaccharides and cyclodextrins (CDs). The CM-CD pathway has emerged as a convenient microbial adaptation to thrive under extreme temperatures, as CDs are functional amphipathic toroids with higher heat-resistant values than linear dextrins. Nevertheless, although the CM-CD pathway has been described in a few mesophilic bacteria and archaea, it remains obscure in extremely thermophilic prokaryotes (T(opt) ≥ 70 °C). Here, a new monophyletic group of CGTases with an exceptional three-domain ABC architecture was detected by (meta)genome mining of extremely thermophilic Thermoanaerobacterales living in a wide variety of hot starch-poor environments on Earth. Functional studies of a representative member, CldA, showed a maximum activity in a thermoacidophilic range (pH 4.0 and 80 °C) with remarkable product diversification that yielded a mixture of α:β:γ-CDs (34:62:4) from soluble starch, as well as G3–G7 linear dextrins and fermentable sugars as the primary products. Together, comparative genomics and predictive functional analysis, combined with data of the functionally characterized key proteins of the gene clusters encoding CGTases, revealed the CM-CD pathway in Thermoanaerobacterales and showed that it is involved in the synthesis, transportation, degradation, and metabolic assimilation of CDs. Nature Publishing Group UK 2022-01-14 /pmc/articles/PMC8760340/ /pubmed/35031648 http://dx.doi.org/10.1038/s41598-021-04569-x Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Centeno-Leija, Sara
Espinosa-Barrera, Laura
Velazquez-Cruz, Beatriz
Cárdenas-Conejo, Yair
Virgen-Ortíz, Raúl
Valencia-Cruz, Georgina
Saenz, Roberto A.
Marín-Tovar, Yerli
Gómez-Manzo, Saúl
Hernández-Ochoa, Beatriz
Rocha-Ramirez, Luz María
Zataraín-Palacios, Rocío
Osuna-Castro, Juan A.
López-Munguía, Agustín
Serrano-Posada, Hugo
Mining for novel cyclomaltodextrin glucanotransferases unravels the carbohydrate metabolism pathway via cyclodextrins in Thermoanaerobacterales
title Mining for novel cyclomaltodextrin glucanotransferases unravels the carbohydrate metabolism pathway via cyclodextrins in Thermoanaerobacterales
title_full Mining for novel cyclomaltodextrin glucanotransferases unravels the carbohydrate metabolism pathway via cyclodextrins in Thermoanaerobacterales
title_fullStr Mining for novel cyclomaltodextrin glucanotransferases unravels the carbohydrate metabolism pathway via cyclodextrins in Thermoanaerobacterales
title_full_unstemmed Mining for novel cyclomaltodextrin glucanotransferases unravels the carbohydrate metabolism pathway via cyclodextrins in Thermoanaerobacterales
title_short Mining for novel cyclomaltodextrin glucanotransferases unravels the carbohydrate metabolism pathway via cyclodextrins in Thermoanaerobacterales
title_sort mining for novel cyclomaltodextrin glucanotransferases unravels the carbohydrate metabolism pathway via cyclodextrins in thermoanaerobacterales
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8760340/
https://www.ncbi.nlm.nih.gov/pubmed/35031648
http://dx.doi.org/10.1038/s41598-021-04569-x
work_keys_str_mv AT centenoleijasara miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT espinosabarreralaura miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT velazquezcruzbeatriz miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT cardenasconejoyair miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT virgenortizraul miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT valenciacruzgeorgina miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT saenzrobertoa miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT marintovaryerli miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT gomezmanzosaul miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT hernandezochoabeatriz miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT rocharamirezluzmaria miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT zatarainpalaciosrocio miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT osunacastrojuana miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT lopezmunguiaagustin miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales
AT serranoposadahugo miningfornovelcyclomaltodextringlucanotransferasesunravelsthecarbohydratemetabolismpathwayviacyclodextrinsinthermoanaerobacterales