Structural and biophysical characterization of the secreted, β-helical adhesin EtpA of Enterotoxigenic Escherichia coli

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Authors

Ntui, Clifford Manyo
Fleckenstein, James M.
Schubert, Wolf-Dieter

Journal Title

Journal ISSN

Volume Title

Publisher

Public Library of Science

Abstract

Enterotoxigenic Escherichia coli (ETEC) is a diarrhoeal pathogen associated with high morbidity and mortality especially among young children in developing countries. At present, there is no vaccine for ETEC. One candidate vaccine antigen, EtpA, is a conserved secreted adhesin that binds to the tips of flagellae to bridge ETEC to host intestinal glycans. EtpA is exported through a Gram-negative, two-partner secretion system (TPSS, type Vb) comprised of the secreted EtpA passenger (TpsA) protein and EtpB (TpsB) transporter that is integrated into the outer bacterial membrane. TpsA proteins share a conserved, N-terminal TPS domain followed by an extensive C-terminal domain with divergent sequence repeats. Two soluble, N-terminal constructs of EtpA were prepared and analysed respectively including residues 67 to 447 (EtpA67-447) and 1 to 606 (EtpA1-606). The crystal structure of EtpA67- 447 solved at 1.76 Å resolution revealed a right-handed parallel β-helix with two extra-helical hairpins and an N-terminal β-strand cap. Analyses by circular dichroism spectroscopy confirmed the β-helical fold and indicated high resistance to chemical and thermal denaturation as well as rapid refolding. A theoretical AlphaFold model of full-length EtpA largely concurs with the crystal structure adding an extended β-helical C-terminal domain after an interdomain kink. We propose that robust folding of the TPS domain upon secretion provides a template to extend the N-terminal β-helix into the C-terminal domains of TpsA proteins.

Description

DATA AVAILABILITY STATEMENT : All relevant data are within the paper and its Supporting Information files.
SUPPORTING INFORMATION : TABLE S1. Plasmids and primers used. FIGURE S1. Schematic representation of full-length EtpA protein. The signal peptide (SP) for localization and processing and the TPS domain for recognition by the transport partner are indicated. The four consecutive repeats (R1, R2, R3 and R4) and the C-terminal tail are also indicated. The numbers represent the start and end of each fragment. The two N-terminal fragments; EtpA1-606 and EtpA67-447 are shown. FIGURE S2. Purification of EtpA67-447. (A) Single-peak ion exchange chromatography profile, (B) Single-peak size exclusion chromatography profile of EtpA67-447 and a single band on SDS-PAGE (insert) matching the 38 kDa size of monomeric EtpA67-447.FIGURE S3. Urea dependent un- and refolding of EtpA1-606. (A-C) CD spectra for untreated (0M urea, black squares), urea treated (1.5 to 4.5Murea, red spheres) and renatured samples (blue triangle). RAW IMAGES S1.

Keywords

Enterotoxigenic Escherichia coli (ETEC), Mortality, Morbidity, Young children, SDG-03: Good health and well-being

Sustainable Development Goals

SDG-03:Good heatlh and well-being

Citation

Ntui, C.M., Fleckenstein, J.M. & Schubert, W.-D. (2023) Structural and biophysical characterization of the secreted, β-helical adhesin EtpA of Enterotoxigenic Escherichia coli. PLoS One 18(6): e0287100. https://DOI.org/10.1371/journal.pone.0287100.