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Molecular basis for the folding of β-helical autotransporter passenger domains

Authors :
Jing Zhang
Robert N. Pike
Lakshmi C. Wijeyewickrema
Mark A. Schembri
Denisse L. Leyton
Alvin W. Lo
Matthew D. Johnson
Ian R. Henderson
Gerard H. M. Huysmans
Xiaojun Yuan
Source :
Nature Communications, Nature Communications, Vol 9, Iss 1, Pp 1-12 (2018)
Publication Year :
2017

Abstract

Bacterial autotransporters comprise a C-terminal β-barrel domain, which must be correctly folded and inserted into the outer membrane to facilitate translocation of the N-terminal passenger domain to the cell exterior. Once at the surface, the passenger domains of most autotransporters are folded into an elongated β-helix. In a cellular context, key molecules catalyze the assembly of the autotransporter β-barrel domain. However, how the passenger domain folds into its functional form is poorly understood. Here we use mutational analysis on the autotransporter Pet to show that the β-hairpin structure of the fifth extracellular loop of the β-barrel domain has a crucial role for passenger domain folding into a β-helix. Bioinformatics and structural analyses, and mutagenesis of a homologous autotransporter, suggest that this function is conserved among autotransporter proteins with β-helical passenger domains. We propose that the autotransporter β-barrel domain is a folding vector that nucleates folding of the passenger domain.<br />Autotransporter passenger domains are presented on or released from the bacterial surface upon translocation through an outer membrane β-barrel anchor. Here the authors study the two E. coli autotransporters Pet and EspP and propose that the β-barrel anchor acts as a vector to nucleate the folding of the passenger domain.

Details

ISSN :
20411723
Volume :
9
Issue :
1
Database :
OpenAIRE
Journal :
Nature communications
Accession number :
edsair.doi.dedup.....11904941a7f0d6b1ddfb19cd310ca37f