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dc.creatorMizgalska D., Goulas T., Rodríguez-Banqueri A., Veillard F., Madej M., Małecka E., Szczesniak K., Ksiazek M., Widziołek M., Guevara T., Eckhard U., Solà M., Potempa J., Gomis-Rüth F.X.en
dc.date.accessioned2023-01-31T09:00:45Z
dc.date.available2023-01-31T09:00:45Z
dc.date.issued2021
dc.identifier10.1073/pnas.2103573118
dc.identifier.issn00278424
dc.identifier.urihttp://hdl.handle.net/11615/76694
dc.description.abstractPorphyromonas gingivalis is a keystone pathogen of the human dysbiotic oral microbiome that causes severe periodontitis. It employs a type-IX secretion system (T9SS) to shuttle proteins across the outer membrane (OM) for virulence. Uniquely, T9SS cargoes carry a C-terminal domain (CTD) as a secretion signal, which is cleaved and replaced with anionic lipopolysaccharide by transpeptidation for extracellular anchorage to the OM. Both reactions are carried out by PorU, the only known dual-function, C-terminal signal peptidase and sortase. PorU is itself secreted by the T9SS, but its CTD is not removed; instead, intact PorU combines with PorQ, PorV, and PorZ in the OM-inserted “attachment complex.” Herein, we revealed that PorU transits between active monomers and latent dimers and solved the crystal structure of the ∼260-kDa dimer. PorU has an elongated shape ∼130 Å in length and consists of seven domains. The first three form an intertwined N-terminal cluster likely engaged in substrate binding. They are followed by a gingipain-type catalytic domain (CD), two immunoglobulin-like domains (IGL), and the CTD. In the first IGL, a long “latency β-hairpin” protrudes ∼30 Å from the surface to form an intermolecular β-barrel with β-strands from the symmetric CD, which is in a latent conformation. Homology modeling of the competent CD followed by in vivo validation through a cohort of mutant strains revealed that PorU is transported and functions as a monomer through a C690/H657 catalytic dyad. Thus, dimerization is an intermolecular mechanism for PorU regulation to prevent untimely activity until joining the attachment complex. © 2021 National Academy of Sciences. All rights reserved.en
dc.language.isoenen
dc.sourceProceedings of the National Academy of Sciences of the United States of Americaen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85116365742&doi=10.1073%2fpnas.2103573118&partnerID=40&md5=434e6c549641a15a0d1ea3db3e9c0101
dc.subjectdimeren
dc.subjectgingipain cysteine endopeptidaseen
dc.subjectmonomeren
dc.subjectPorU proteinen
dc.subjectsignal peptidaseen
dc.subjectsortaseen
dc.subjectunclassified drugen
dc.subjectbacterial proteinen
dc.subjectmembrane proteinen
dc.subjectserine proteinaseen
dc.subjecttype I signal peptidaseen
dc.subjectArticleen
dc.subjectbeta barrelen
dc.subjectbeta sheeten
dc.subjectcarboxy terminal sequenceen
dc.subjectconformational transitionen
dc.subjectcontrolled studyen
dc.subjectcrystal structureen
dc.subjectdimerizationen
dc.subjectenzyme active siteen
dc.subjectenzyme substrate complexen
dc.subjectimmunoglobulin domainen
dc.subjectnonhumanen
dc.subjectoligomerizationen
dc.subjectPorphyromonas gingivalisen
dc.subjectprotein domainen
dc.subjectprotein structureen
dc.subjecttype IV secretion systemen
dc.subjectbacterial secretion systemen
dc.subjectcatalysisen
dc.subjectgeneticsen
dc.subjectPorphyromonas gingivalisen
dc.subjectprotein transporten
dc.subjectvirulenceen
dc.subjectBacterial Proteinsen
dc.subjectBacterial Secretion Systemsen
dc.subjectCatalysisen
dc.subjectMembrane Proteinsen
dc.subjectPorphyromonas gingivalisen
dc.subjectProtein Domainsen
dc.subjectProtein Transporten
dc.subjectSerine Endopeptidasesen
dc.subjectVirulenceen
dc.subjectNational Academy of Sciencesen
dc.titleIntermolecular latency regulates the essential C-terminal signal peptidase and sortase of the Porphyromonas gingivalis type-IX secretion systemen
dc.typejournalArticleen


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