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Activation and Proteolytic Activity of the Treponema pallidum Metalloprotease, Pallilysin

Treponema pallidum is a highly invasive pathogen that undergoes rapid dissemination to establish widespread infection. Previous investigations identified the T. pallidum adhesin, pallilysin, as an HEXXH-containing metalloprotease that undergoes autocatalytic cleavage and degrades laminin and fibrino...

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Autores principales: Houston, Simon, Hof, Rebecca, Honeyman, Lisa, Hassler, Julia, Cameron, Caroline E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3406077/
https://www.ncbi.nlm.nih.gov/pubmed/22910436
http://dx.doi.org/10.1371/journal.ppat.1002822
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author Houston, Simon
Hof, Rebecca
Honeyman, Lisa
Hassler, Julia
Cameron, Caroline E.
author_facet Houston, Simon
Hof, Rebecca
Honeyman, Lisa
Hassler, Julia
Cameron, Caroline E.
author_sort Houston, Simon
collection PubMed
description Treponema pallidum is a highly invasive pathogen that undergoes rapid dissemination to establish widespread infection. Previous investigations identified the T. pallidum adhesin, pallilysin, as an HEXXH-containing metalloprotease that undergoes autocatalytic cleavage and degrades laminin and fibrinogen. In the current study we characterized pallilysin's active site, activation requirements, cellular location, and fibrin clot degradation capacity through both in vitro assays and heterologous treponemal expression and degradation studies. Site-directed mutagenesis showed the pallilysin HEXXH motif comprises at least part of the active site, as introduction of three independent mutations (AEXXH [H(198)A], HAXXH [E(199)A], and HEXXA [H(202)A]) abolished pallilysin-mediated fibrinogenolysis but did not adversely affect host component binding. Attainment of full pallilysin proteolytic activity was dependent upon autocatalytic cleavage of an N-terminal pro-domain, a process which could not occur in the HEXXH mutants. Pallilysin was shown to possess a thrombin cleavage site within its N-terminal pro-domain, and in vitro studies confirmed cleavage of pallilysin with thrombin generates a truncated pallilysin fragment that has enhanced proteolytic activity, suggesting pallilysin can also exploit the host coagulation process to facilitate protease activation. Opsonophagocytosis assays performed with viable T. pallidum demonstrated pallilysin is a target of opsonic antibodies, consistent with a host component-interacting, surface-exposed cellular location. Wild-type pallilysin, but not the HEXXA mutant, degraded fibrin clots, and similarly heterologous expression of pallilysin in the non-invasive spirochete Treponema phagedenis facilitated fibrin clot degradation. Collectively these results identify pallilysin as a surface-exposed metalloprotease within T. pallidum that possesses an HEXXH active site motif and requires autocatalytic or host-mediated cleavage of a pro-domain to attain full host component-directed proteolytic activity. Furthermore, our finding that expression of pallilysin confers upon T. phagedenis the capacity to degrade fibrin clots suggests this capability may contribute to the dissemination potential of T. pallidum.
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spelling pubmed-34060772012-07-30 Activation and Proteolytic Activity of the Treponema pallidum Metalloprotease, Pallilysin Houston, Simon Hof, Rebecca Honeyman, Lisa Hassler, Julia Cameron, Caroline E. PLoS Pathog Research Article Treponema pallidum is a highly invasive pathogen that undergoes rapid dissemination to establish widespread infection. Previous investigations identified the T. pallidum adhesin, pallilysin, as an HEXXH-containing metalloprotease that undergoes autocatalytic cleavage and degrades laminin and fibrinogen. In the current study we characterized pallilysin's active site, activation requirements, cellular location, and fibrin clot degradation capacity through both in vitro assays and heterologous treponemal expression and degradation studies. Site-directed mutagenesis showed the pallilysin HEXXH motif comprises at least part of the active site, as introduction of three independent mutations (AEXXH [H(198)A], HAXXH [E(199)A], and HEXXA [H(202)A]) abolished pallilysin-mediated fibrinogenolysis but did not adversely affect host component binding. Attainment of full pallilysin proteolytic activity was dependent upon autocatalytic cleavage of an N-terminal pro-domain, a process which could not occur in the HEXXH mutants. Pallilysin was shown to possess a thrombin cleavage site within its N-terminal pro-domain, and in vitro studies confirmed cleavage of pallilysin with thrombin generates a truncated pallilysin fragment that has enhanced proteolytic activity, suggesting pallilysin can also exploit the host coagulation process to facilitate protease activation. Opsonophagocytosis assays performed with viable T. pallidum demonstrated pallilysin is a target of opsonic antibodies, consistent with a host component-interacting, surface-exposed cellular location. Wild-type pallilysin, but not the HEXXA mutant, degraded fibrin clots, and similarly heterologous expression of pallilysin in the non-invasive spirochete Treponema phagedenis facilitated fibrin clot degradation. Collectively these results identify pallilysin as a surface-exposed metalloprotease within T. pallidum that possesses an HEXXH active site motif and requires autocatalytic or host-mediated cleavage of a pro-domain to attain full host component-directed proteolytic activity. Furthermore, our finding that expression of pallilysin confers upon T. phagedenis the capacity to degrade fibrin clots suggests this capability may contribute to the dissemination potential of T. pallidum. Public Library of Science 2012-07-26 /pmc/articles/PMC3406077/ /pubmed/22910436 http://dx.doi.org/10.1371/journal.ppat.1002822 Text en Houston et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Houston, Simon
Hof, Rebecca
Honeyman, Lisa
Hassler, Julia
Cameron, Caroline E.
Activation and Proteolytic Activity of the Treponema pallidum Metalloprotease, Pallilysin
title Activation and Proteolytic Activity of the Treponema pallidum Metalloprotease, Pallilysin
title_full Activation and Proteolytic Activity of the Treponema pallidum Metalloprotease, Pallilysin
title_fullStr Activation and Proteolytic Activity of the Treponema pallidum Metalloprotease, Pallilysin
title_full_unstemmed Activation and Proteolytic Activity of the Treponema pallidum Metalloprotease, Pallilysin
title_short Activation and Proteolytic Activity of the Treponema pallidum Metalloprotease, Pallilysin
title_sort activation and proteolytic activity of the treponema pallidum metalloprotease, pallilysin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3406077/
https://www.ncbi.nlm.nih.gov/pubmed/22910436
http://dx.doi.org/10.1371/journal.ppat.1002822
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