Engineering the Modular Receptor-Binding Proteins of Klebsiella Phages Switches Their Capsule Serotype Specificity

<jats:p>The antimicrobial resistance crisis has rekindled interest in bacteriophage therapy. Phages have been studied over a century as therapeutics to treat bacterial infections, but one of the biggest challenges for the use of phages in therapeutic interventions remains their high specificit...

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Main Authors: Latka, Agnieszka, Lemire, Sebastien, Grimon, Dennis, Dams, Dorien, Maciejewska, Barbara, Lu, Timothy, Drulis-Kawa, Zuzanna, Briers, Yves
Other Authors: Massachusetts Institute of Technology. Synthetic Biology Center
Format: Article
Language:English
Published: American Society for Microbiology 2022
Online Access:https://hdl.handle.net/1721.1/143757
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author Latka, Agnieszka
Lemire, Sebastien
Grimon, Dennis
Dams, Dorien
Maciejewska, Barbara
Lu, Timothy
Drulis-Kawa, Zuzanna
Briers, Yves
author2 Massachusetts Institute of Technology. Synthetic Biology Center
author_facet Massachusetts Institute of Technology. Synthetic Biology Center
Latka, Agnieszka
Lemire, Sebastien
Grimon, Dennis
Dams, Dorien
Maciejewska, Barbara
Lu, Timothy
Drulis-Kawa, Zuzanna
Briers, Yves
author_sort Latka, Agnieszka
collection MIT
description <jats:p>The antimicrobial resistance crisis has rekindled interest in bacteriophage therapy. Phages have been studied over a century as therapeutics to treat bacterial infections, but one of the biggest challenges for the use of phages in therapeutic interventions remains their high specificity.</jats:p>
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spelling mit-1721.1/1437572023-06-26T20:34:35Z Engineering the Modular Receptor-Binding Proteins of Klebsiella Phages Switches Their Capsule Serotype Specificity Latka, Agnieszka Lemire, Sebastien Grimon, Dennis Dams, Dorien Maciejewska, Barbara Lu, Timothy Drulis-Kawa, Zuzanna Briers, Yves Massachusetts Institute of Technology. Synthetic Biology Center Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science Massachusetts Institute of Technology. Department of Biological Engineering Massachusetts Institute of Technology. Research Laboratory of Electronics Singapore-MIT Alliance in Research and Technology (SMART) <jats:p>The antimicrobial resistance crisis has rekindled interest in bacteriophage therapy. Phages have been studied over a century as therapeutics to treat bacterial infections, but one of the biggest challenges for the use of phages in therapeutic interventions remains their high specificity.</jats:p> 2022-07-15T13:03:29Z 2022-07-15T13:03:29Z 2021 2022-07-15T12:58:14Z Article http://purl.org/eprint/type/JournalArticle https://hdl.handle.net/1721.1/143757 Latka, Agnieszka, Lemire, Sebastien, Grimon, Dennis, Dams, Dorien, Maciejewska, Barbara et al. 2021. "Engineering the Modular Receptor-Binding Proteins of Klebsiella Phages Switches Their Capsule Serotype Specificity." mBio, 12 (3). en 10.1128/MBIO.00455-21 mBio Creative Commons Attribution 4.0 International license https://creativecommons.org/licenses/by/4.0/ application/pdf American Society for Microbiology mBio
spellingShingle Latka, Agnieszka
Lemire, Sebastien
Grimon, Dennis
Dams, Dorien
Maciejewska, Barbara
Lu, Timothy
Drulis-Kawa, Zuzanna
Briers, Yves
Engineering the Modular Receptor-Binding Proteins of Klebsiella Phages Switches Their Capsule Serotype Specificity
title Engineering the Modular Receptor-Binding Proteins of Klebsiella Phages Switches Their Capsule Serotype Specificity
title_full Engineering the Modular Receptor-Binding Proteins of Klebsiella Phages Switches Their Capsule Serotype Specificity
title_fullStr Engineering the Modular Receptor-Binding Proteins of Klebsiella Phages Switches Their Capsule Serotype Specificity
title_full_unstemmed Engineering the Modular Receptor-Binding Proteins of Klebsiella Phages Switches Their Capsule Serotype Specificity
title_short Engineering the Modular Receptor-Binding Proteins of Klebsiella Phages Switches Their Capsule Serotype Specificity
title_sort engineering the modular receptor binding proteins of klebsiella phages switches their capsule serotype specificity
url https://hdl.handle.net/1721.1/143757
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