Conservation of the glycogen metabolism pathway underlines a pivotal function of storage polysaccharides in Chlamydiae

Matthieu Colpaert et al. use biochemical and comparative genomic analyses and identify a trehalose-dependent glycogen synthesis pathway in W. chondrophila and E. lausannensis. These results suggest that the glycogen metabolism pathway is conserved in all Chlamydiales species.

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Autores principales: Matthieu Colpaert, Derifa Kadouche, Mathieu Ducatez, Trestan Pillonel, Carole Kebbi-Beghdadi, Ugo Cenci, Binquan Huang, Malika Chabi, Emmanuel Maes, Bernadette Coddeville, Loïc Couderc, Hélène Touzet, Fabrice Bray, Catherine Tirtiaux, Steven Ball, Gilbert Greub, Christophe Colleoni
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/a69c2def53504a61923d7e67d2a57f90
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spelling oai:doaj.org-article:a69c2def53504a61923d7e67d2a57f902021-12-02T11:37:25ZConservation of the glycogen metabolism pathway underlines a pivotal function of storage polysaccharides in Chlamydiae10.1038/s42003-021-01794-y2399-3642https://doaj.org/article/a69c2def53504a61923d7e67d2a57f902021-03-01T00:00:00Zhttps://doi.org/10.1038/s42003-021-01794-yhttps://doaj.org/toc/2399-3642Matthieu Colpaert et al. use biochemical and comparative genomic analyses and identify a trehalose-dependent glycogen synthesis pathway in W. chondrophila and E. lausannensis. These results suggest that the glycogen metabolism pathway is conserved in all Chlamydiales species.Matthieu ColpaertDerifa KadoucheMathieu DucatezTrestan PillonelCarole Kebbi-BeghdadiUgo CenciBinquan HuangMalika ChabiEmmanuel MaesBernadette CoddevilleLoïc CoudercHélène TouzetFabrice BrayCatherine TirtiauxSteven BallGilbert GreubChristophe ColleoniNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-16 (2021)
institution DOAJ
collection DOAJ
language EN
topic Biology (General)
QH301-705.5
spellingShingle Biology (General)
QH301-705.5
Matthieu Colpaert
Derifa Kadouche
Mathieu Ducatez
Trestan Pillonel
Carole Kebbi-Beghdadi
Ugo Cenci
Binquan Huang
Malika Chabi
Emmanuel Maes
Bernadette Coddeville
Loïc Couderc
Hélène Touzet
Fabrice Bray
Catherine Tirtiaux
Steven Ball
Gilbert Greub
Christophe Colleoni
Conservation of the glycogen metabolism pathway underlines a pivotal function of storage polysaccharides in Chlamydiae
description Matthieu Colpaert et al. use biochemical and comparative genomic analyses and identify a trehalose-dependent glycogen synthesis pathway in W. chondrophila and E. lausannensis. These results suggest that the glycogen metabolism pathway is conserved in all Chlamydiales species.
format article
author Matthieu Colpaert
Derifa Kadouche
Mathieu Ducatez
Trestan Pillonel
Carole Kebbi-Beghdadi
Ugo Cenci
Binquan Huang
Malika Chabi
Emmanuel Maes
Bernadette Coddeville
Loïc Couderc
Hélène Touzet
Fabrice Bray
Catherine Tirtiaux
Steven Ball
Gilbert Greub
Christophe Colleoni
author_facet Matthieu Colpaert
Derifa Kadouche
Mathieu Ducatez
Trestan Pillonel
Carole Kebbi-Beghdadi
Ugo Cenci
Binquan Huang
Malika Chabi
Emmanuel Maes
Bernadette Coddeville
Loïc Couderc
Hélène Touzet
Fabrice Bray
Catherine Tirtiaux
Steven Ball
Gilbert Greub
Christophe Colleoni
author_sort Matthieu Colpaert
title Conservation of the glycogen metabolism pathway underlines a pivotal function of storage polysaccharides in Chlamydiae
title_short Conservation of the glycogen metabolism pathway underlines a pivotal function of storage polysaccharides in Chlamydiae
title_full Conservation of the glycogen metabolism pathway underlines a pivotal function of storage polysaccharides in Chlamydiae
title_fullStr Conservation of the glycogen metabolism pathway underlines a pivotal function of storage polysaccharides in Chlamydiae
title_full_unstemmed Conservation of the glycogen metabolism pathway underlines a pivotal function of storage polysaccharides in Chlamydiae
title_sort conservation of the glycogen metabolism pathway underlines a pivotal function of storage polysaccharides in chlamydiae
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/a69c2def53504a61923d7e67d2a57f90
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