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Structural and mechanistic insights into the bacterial amyloid secretion channel CsgG

Authors :
Jerome S. Pinkner
Rémi Fronzes
Francesca Gubellini
Parveen Goyal
Petya V. Krasteva
Han Remaut
Imke Van den Broeck
Gérard Pehau-Arnaudet
Matthew George Chapman
Scott J. Hultgren
Anastassia Troupiotis-Tsaïlaki
Wim Jonckheere
Nani Van Gerven
Stefan Howorka
VIB-VUB Center for Structural Biology [Bruxelles]
VIB [Belgium]
Vrije Universiteit Brussel (VUB)
Biologie Structurale de la Sécrétion Bactérienne
Institut Pasteur [Paris] (IP)-Centre National de la Recherche Scientifique (CNRS)
Université libre de Bruxelles (ULB)
Washington University School of Medicine in St. Louis
Washington University in Saint Louis (WUSTL)
University of Michigan [Ann Arbor]
University of Michigan System
University College of London [London] (UCL)
This research was supported by VIB through project grant PRJ9 (P.G., N.V.G. and H.R.), by Hercules Foundation through equipment grant UABR/09/005, by National Institutes of Health RO1 grants AI099099 and AI048689 (J.P. and S.J.H.) and A1073847 (M.R.C.), and by Institut Pasteur and Centre national de la recherche scientifique (F.G., G.P.A. and R.F.). S.H. is funded by the Engineering and Physical Sciences Research Council (Institutional Sponsorship Award), the National Physical Laboratory and University College London Chemistry. F.G. is the recipient of a ‘Bourse Roux’ from Institut Pasteur. P.V.K. was supported by the European Research Council (ERC).
Institut Pasteur [Paris]-Centre National de la Recherche Scientifique (CNRS)
Faculty of Sciences and Bioengineering Sciences
Structural Biology Brussels
Department of Bio-engineering Sciences
Source :
Nature, Nature, 2014, 516 (7530), pp.250-253. ⟨10.1038/nature13768⟩, Nature, Nature Publishing Group, 2014, 516 (7530), pp.250-253. ⟨10.1038/nature13768⟩
Publication Year :
2014
Publisher :
HAL CCSD, 2014.

Abstract

International audience; Curli are functional amyloid fibres that constitute the major protein component of the extracellular matrix in pellicle biofilms formed by Bacteroidetes and Proteobacteria (predominantly of the α and γ classes). They provide a fitness advantage in pathogenic strains and induce a strong pro-inflammatory response during bacteraemia. Curli formation requires a dedicated protein secretion machinery comprising the outer membrane lipoprotein CsgG and two soluble accessory proteins, CsgE and CsgF. Here we report the X-ray structure of Escherichia coli CsgG in a non-lipidated, soluble form as well as in its native membrane-extracted conformation. CsgG forms an oligomeric transport complex composed of nine anticodon-binding-domain-like units that give rise to a 36-stranded β-barrel that traverses the bilayer and is connected to a cage-like vestibule in the periplasm. The transmembrane and periplasmic domains are separated by a 0.9-nm channel constriction composed of three stacked concentric phenylalanine, asparagine and tyrosine rings that may guide the extended polypeptide substrate through the secretion pore. The specificity factor CsgE forms a nonameric adaptor that binds and closes off the periplasmic face of the secretion channel, creating a 24,000 Å(3) pre-constriction chamber. Our structural, functional and electrophysiological analyses imply that CsgG is an ungated, non-selective protein secretion channel that is expected to employ a diffusion-based, entropy-driven transport mechanism.

Details

Language :
English
ISSN :
00280836, 14764687, and 14764679
Database :
OpenAIRE
Journal :
Nature, Nature, 2014, 516 (7530), pp.250-253. ⟨10.1038/nature13768⟩, Nature, Nature Publishing Group, 2014, 516 (7530), pp.250-253. ⟨10.1038/nature13768⟩
Accession number :
edsair.doi.dedup.....6e45d376845ad19a23502e54373d6ff9
Full Text :
https://doi.org/10.1038/nature13768⟩