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

Details

Ressource 1Request a copy Under indefinite embargo.
UNIL restricted access
State: Public
Version: author
License: CC BY 4.0
Serval ID
serval:BIB_784BDEF3A2A4
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Conservation of the glycogen metabolism pathway underlines a pivotal function of storage polysaccharides in Chlamydiae.
Journal
Communications biology
Author(s)
Colpaert M., Kadouche D., Ducatez M., Pillonel T., Kebbi-Beghdadi C., Cenci U., Huang B., Chabi M., Maes E., Coddeville B., Couderc L., Touzet H., Bray F., Tirtiaux C., Ball S., Greub G., Colleoni C.
ISSN
2399-3642 (Electronic)
ISSN-L
2399-3642
Publication state
Published
Issued date
05/03/2021
Peer-reviewed
Oui
Volume
4
Number
1
Pages
296
Language
english
Notes
Publication types: Journal Article
Publication Status: epublish
Abstract
The order Chlamydiales includes obligate intracellular pathogens capable of infecting mammals, fishes and amoeba. Unlike other intracellular bacteria for which intracellular adaptation led to the loss of glycogen metabolism pathway, all chlamydial families maintained the nucleotide-sugar dependent glycogen metabolism pathway i.e. the GlgC-pathway with the notable exception of both Criblamydiaceae and Waddliaceae families. Through detailed genome analysis and biochemical investigations, we have shown that genome rearrangement events have resulted in a defective GlgC-pathway and more importantly we have evidenced a distinct trehalose-dependent GlgE-pathway in both Criblamydiaceae and Waddliaceae families. Altogether, this study strongly indicates that the glycogen metabolism is retained in all Chlamydiales without exception, highlighting the pivotal function of storage polysaccharides, which has been underestimated to date. We propose that glycogen degradation is a mandatory process for fueling essential metabolic pathways that ensure the survival and virulence of extracellular forms i.e. elementary bodies of Chlamydiales.
Pubmed
Web of science
Open Access
Yes
Create date
16/03/2021 9:43
Last modification date
21/07/2023 7:00
Usage data