Structure of the protective nematode protease complex H-gal-GP and its conservation across roundworm parasites.

Roundworm parasite infections are a major cause of human and livestock disease worldwide and a threat to global food security. Disease control currently relies on anthelmintic drugs to which roundworms are becoming increasingly resistant. An alternative approach is control by vaccination and 'h...

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Main Authors: Charlotte A Scarff, Rebecca F Thompson, George F J Newlands, Alexander H Jamson, Christopher Kennaway, Vivian J da Silva, Elida M Rabelo, Chun-Feng Song, John Trinick, W David Smith, Stephen P Muench
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-04-01
Series:PLoS Pathogens
Online Access:https://doi.org/10.1371/journal.ppat.1008465
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spelling doaj-0ff427ede1274c4cb57f1665bf1bf24f2021-04-21T17:14:43ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742020-04-01164e100846510.1371/journal.ppat.1008465Structure of the protective nematode protease complex H-gal-GP and its conservation across roundworm parasites.Charlotte A ScarffRebecca F ThompsonGeorge F J NewlandsAlexander H JamsonChristopher KennawayVivian J da SilvaElida M RabeloChun-Feng SongJohn TrinickW David SmithStephen P MuenchRoundworm parasite infections are a major cause of human and livestock disease worldwide and a threat to global food security. Disease control currently relies on anthelmintic drugs to which roundworms are becoming increasingly resistant. An alternative approach is control by vaccination and 'hidden antigens', components of the worm gut not encountered by the infected host, have been exploited to produce Barbervax, the first commercial vaccine for a gut dwelling nematode of any host. Here we present the structure of H-gal-GP, a hidden antigen from Haemonchus contortus, the Barber's Pole worm, and a major component of Barbervax. We demonstrate its novel architecture, subunit composition and topology, flexibility and heterogeneity using cryo-electron microscopy, mass spectrometry, and modelling. Importantly, we demonstrate that complexes with the same architecture are present in other Strongylid roundworm parasites including human hookworm. This suggests a common ancestry and the potential for development of a unified hidden antigen vaccine.https://doi.org/10.1371/journal.ppat.1008465
collection DOAJ
language English
format Article
sources DOAJ
author Charlotte A Scarff
Rebecca F Thompson
George F J Newlands
Alexander H Jamson
Christopher Kennaway
Vivian J da Silva
Elida M Rabelo
Chun-Feng Song
John Trinick
W David Smith
Stephen P Muench
spellingShingle Charlotte A Scarff
Rebecca F Thompson
George F J Newlands
Alexander H Jamson
Christopher Kennaway
Vivian J da Silva
Elida M Rabelo
Chun-Feng Song
John Trinick
W David Smith
Stephen P Muench
Structure of the protective nematode protease complex H-gal-GP and its conservation across roundworm parasites.
PLoS Pathogens
author_facet Charlotte A Scarff
Rebecca F Thompson
George F J Newlands
Alexander H Jamson
Christopher Kennaway
Vivian J da Silva
Elida M Rabelo
Chun-Feng Song
John Trinick
W David Smith
Stephen P Muench
author_sort Charlotte A Scarff
title Structure of the protective nematode protease complex H-gal-GP and its conservation across roundworm parasites.
title_short Structure of the protective nematode protease complex H-gal-GP and its conservation across roundworm parasites.
title_full Structure of the protective nematode protease complex H-gal-GP and its conservation across roundworm parasites.
title_fullStr Structure of the protective nematode protease complex H-gal-GP and its conservation across roundworm parasites.
title_full_unstemmed Structure of the protective nematode protease complex H-gal-GP and its conservation across roundworm parasites.
title_sort structure of the protective nematode protease complex h-gal-gp and its conservation across roundworm parasites.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2020-04-01
description Roundworm parasite infections are a major cause of human and livestock disease worldwide and a threat to global food security. Disease control currently relies on anthelmintic drugs to which roundworms are becoming increasingly resistant. An alternative approach is control by vaccination and 'hidden antigens', components of the worm gut not encountered by the infected host, have been exploited to produce Barbervax, the first commercial vaccine for a gut dwelling nematode of any host. Here we present the structure of H-gal-GP, a hidden antigen from Haemonchus contortus, the Barber's Pole worm, and a major component of Barbervax. We demonstrate its novel architecture, subunit composition and topology, flexibility and heterogeneity using cryo-electron microscopy, mass spectrometry, and modelling. Importantly, we demonstrate that complexes with the same architecture are present in other Strongylid roundworm parasites including human hookworm. This suggests a common ancestry and the potential for development of a unified hidden antigen vaccine.
url https://doi.org/10.1371/journal.ppat.1008465
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