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http://hdl.handle.net/1942/31779
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DC Field | Value | Language |
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dc.contributor.author | Oliveira, H | - |
dc.contributor.author | Pinto, G | - |
dc.contributor.author | Mendes, B | - |
dc.contributor.author | Dias, O | - |
dc.contributor.author | Hendrix, H | - |
dc.contributor.author | Akturk, E | - |
dc.contributor.author | NOBEN, Jean-Paul | - |
dc.contributor.author | Gawor, J | - |
dc.contributor.author | Lobocka, M | - |
dc.contributor.author | Lavigne, R | - |
dc.contributor.author | Azeredo, J | - |
dc.contributor.editor | Pettinari, M. Julia | - |
dc.date.accessioned | 2020-08-21T10:13:41Z | - |
dc.date.available | 2020-08-21T10:13:41Z | - |
dc.date.issued | 2020 | - |
dc.date.submitted | 2020-08-18T15:16:18Z | - |
dc.identifier.citation | Applied and environmental microbiology, 86 (13) (Art N° e00073-20) | - |
dc.identifier.issn | 0099-2240 | - |
dc.identifier.uri | http://hdl.handle.net/1942/31779 | - |
dc.description.abstract | Providencia stuartii is emerging as a significant drug-resistant nosocomial pathogen, which encourages the search for alternative therapies. Here, we have isolated Providencia stuartii phage Stuart, a novel podovirus infecting multidrug-resistant hospital isolates of this bacterium. Phage Stuart is a proposed member of a new Autographivirinae subfamily genus, with a 41,218-bp genome, direct 345-bp repeats at virion DNA ends, and limited sequence similarity of proteins to proteins in databases. Twelve out of the 52 predicted Stuart proteins are virion components. We found one to be a tailspike with depolymerase activity. The tailspike could form a highly thermostable oligomeric beta-structure migrating close to the expected trimer in a nondenaturing gel. It appeared to be essential for the infection of three out of four P. stuartii hosts infected by phage Stuart. Moreover, it degraded the exopolysaccharide of relevant phage Stuart hosts, making the bacteria susceptible to serum killing. Prolonged exposure of a sensitive host to the tailspike did not cause the emergence of bacteria resistant to the phage or to serum killing, opposite to the prolonged exposure to the phage. This indicates that phage tail-associated depoly-merases are attractive antivirulence agents that could complement the immune system in the fight with P. stuartii.IMPORTANCE The pace at which multidrug-resistant strains emerge has been alarming. P. stuartii is an infrequent but relevant drug-resistant nosocomial pathogen causing local to systemic life-threatening infections. We propose an alternative approach to fight this bacterium based on the properties of phage tailspikes with depolymerase activity that degrade the surface bacterial polymers, making the bacteria susceptible to the immune system. Unlike antibiotics, phage tailspikes have narrow and specific substrate spectra, and by acting as antivirulent but not bactericidal agents they do not cause the selection of resistant bacteria. | - |
dc.description.sponsorship | This study was supported by the Portuguese Foundation for Science and Technology (FCT) under the scope of the strategic funding of UID/BIO/04469/2020 unit and BioTecNorte operation (NORTE-01-0145-FEDER-000004) funded by the European Regional Development Fund under the scope of Norte2020—Programa Operacional Regional do Norte. R.L. and H.H. are supported by the GOA grant from KU Leuven “Phage Biosystems.” G.P. acknowledges the FCT grant SFRH/BD/117365/2016. | - |
dc.language.iso | en | - |
dc.publisher | AMER SOC MICROBIOLOGY | - |
dc.rights | 2020 American Society for Microbiology. | - |
dc.subject.other | Providencia spp. | - |
dc.subject.other | antivirulence | - |
dc.subject.other | bacteriophage | - |
dc.subject.other | depolymerase | - |
dc.subject.other | tailspike | - |
dc.title | A Tailspike with Exopolysaccharide Depolymerase Activity from a New Providencia stuartii Phage Makes Multidrug-Resistant Bacteria Susceptible to Serum-Mediated Killing | - |
dc.type | Journal Contribution | - |
local.bibliographicCitation.authors | Pettinari, M. Julia | - |
dc.identifier.issue | 13 | - |
dc.identifier.volume | 86 | - |
local.format.pages | 14 | - |
local.bibliographicCitation.jcat | A1 | - |
local.publisher.place | 1752 N ST NW, WASHINGTON, DC 20036-2904 USA | - |
local.type.refereed | Refereed | - |
local.type.specified | Article | - |
local.bibliographicCitation.artnr | e00073-20 | - |
dc.identifier.doi | 10.1128/AEM.00073-20 | - |
dc.identifier.pmid | 32357999 | - |
dc.identifier.isi | WOS:000546650600003 | - |
dc.identifier.eissn | 1098-5336 | - |
local.provider.type | Web of Science | - |
local.uhasselt.uhpub | yes | - |
local.uhasselt.international | yes | - |
item.validation | ecoom 2021 | - |
item.contributor | Oliveira, H | - |
item.contributor | Pinto, G | - |
item.contributor | Mendes, B | - |
item.contributor | Dias, O | - |
item.contributor | Hendrix, H | - |
item.contributor | Akturk, E | - |
item.contributor | NOBEN, Jean-Paul | - |
item.contributor | Gawor, J | - |
item.contributor | Lobocka, M | - |
item.contributor | Lavigne, R | - |
item.contributor | Azeredo, J | - |
item.contributor | Pettinari, M. Julia | - |
item.fullcitation | Oliveira, H; Pinto, G; Mendes, B; Dias, O; Hendrix, H; Akturk, E; NOBEN, Jean-Paul; Gawor, J; Lobocka, M; Lavigne, R & Azeredo, J (2020) A Tailspike with Exopolysaccharide Depolymerase Activity from a New Providencia stuartii Phage Makes Multidrug-Resistant Bacteria Susceptible to Serum-Mediated Killing. In: Applied and environmental microbiology, 86 (13) (Art N° e00073-20). | - |
item.fulltext | With Fulltext | - |
item.accessRights | Open Access | - |
crisitem.journal.issn | 0099-2240 | - |
crisitem.journal.eissn | 1098-5336 | - |
Appears in Collections: | Research publications |
Files in This Item:
File | Description | Size | Format | |
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AEM.00073-20.pdf | Published version | 1.41 MB | Adobe PDF | View/Open |
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