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Exploiting a conjugative endogenous CRISPR-Cas3 system to tackle multidrug-resistant Klebsiella pneumoniae

BACKGROUND: Mobile plasmids play a key role in spurring the global dissemination of multidrug-resistant (MDR) K. pneumoniae, while plasmid curing has been recognized as a promising strategy to combat antimicrobial resistance. Here we exploited a K. pneumoniae native CRISPR system to cure the high-ri...

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Autores principales: Zhou, Ying, Yang, Yang, Li, Xiaobin, Tian, Dongxing, Ai, Wenxiu, Wang, Weiwen, Wang, Bingjie, Kreiswirth, Barry N., Yu, Fangyou, Chen, Liang, Jiang, Xiaofei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9879765/
https://www.ncbi.nlm.nih.gov/pubmed/36696817
http://dx.doi.org/10.1016/j.ebiom.2023.104445
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author Zhou, Ying
Yang, Yang
Li, Xiaobin
Tian, Dongxing
Ai, Wenxiu
Wang, Weiwen
Wang, Bingjie
Kreiswirth, Barry N.
Yu, Fangyou
Chen, Liang
Jiang, Xiaofei
author_facet Zhou, Ying
Yang, Yang
Li, Xiaobin
Tian, Dongxing
Ai, Wenxiu
Wang, Weiwen
Wang, Bingjie
Kreiswirth, Barry N.
Yu, Fangyou
Chen, Liang
Jiang, Xiaofei
author_sort Zhou, Ying
collection PubMed
description BACKGROUND: Mobile plasmids play a key role in spurring the global dissemination of multidrug-resistant (MDR) K. pneumoniae, while plasmid curing has been recognized as a promising strategy to combat antimicrobial resistance. Here we exploited a K. pneumoniae native CRISPR system to cure the high-risk IncFII plasmids. METHODS: We examined matched protospacers in 725 completely sequenced IncFII plasmids from K. pneumoniae genomes. Then, we re-engineered a native CRISPR-Cas3 system and deliver the CRISPR-Cas3 system via conjugation. Plasmid killing efficiency and G. mellonella infection model were applied to evaluate the CRISPR-Cas3 immunity in vitro and in vivo. FINDINGS: Genomic analysis revealed that most IncFII plasmids could be targeted by the native CRISPR-Cas3 system with multiple matched protospacers, and the targeting regions were highly conserved across different IncFII plasmids. This conjugative endogenous CRISPR-Cas3 system demonstrated high plasmid curing efficiency in vitro (8-log decrease) and in vivo (∼100% curing) in a Galleria mellonella infection model, as well as provided immunization against the invasion of IncFII plasmids once the system entering a susceptible bacterial host. INTERPRETATION: Overall, our work demonstrated the applicability of using native CRISPR-mediated plasmid curing to re-sensitize drug-resistant K. pneumoniae to multiple antibiotics. This work provided strong support for the idea of utilizing native CRISPR-Cas systems to tackle AMR in K. pneumoniae. FUNDING: This work was supported by research grants 10.13039/100014717National Natural Science Foundation of China [grant numbers 81871692, 82172315, 82102439, and 82202564], the 10.13039/501100003399Shanghai Science and Technology Commission [grant number 19JC1413002], and Shanghai Sailing Program [grant number 22YF1437500].
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spelling pubmed-98797652023-01-28 Exploiting a conjugative endogenous CRISPR-Cas3 system to tackle multidrug-resistant Klebsiella pneumoniae Zhou, Ying Yang, Yang Li, Xiaobin Tian, Dongxing Ai, Wenxiu Wang, Weiwen Wang, Bingjie Kreiswirth, Barry N. Yu, Fangyou Chen, Liang Jiang, Xiaofei eBioMedicine Articles BACKGROUND: Mobile plasmids play a key role in spurring the global dissemination of multidrug-resistant (MDR) K. pneumoniae, while plasmid curing has been recognized as a promising strategy to combat antimicrobial resistance. Here we exploited a K. pneumoniae native CRISPR system to cure the high-risk IncFII plasmids. METHODS: We examined matched protospacers in 725 completely sequenced IncFII plasmids from K. pneumoniae genomes. Then, we re-engineered a native CRISPR-Cas3 system and deliver the CRISPR-Cas3 system via conjugation. Plasmid killing efficiency and G. mellonella infection model were applied to evaluate the CRISPR-Cas3 immunity in vitro and in vivo. FINDINGS: Genomic analysis revealed that most IncFII plasmids could be targeted by the native CRISPR-Cas3 system with multiple matched protospacers, and the targeting regions were highly conserved across different IncFII plasmids. This conjugative endogenous CRISPR-Cas3 system demonstrated high plasmid curing efficiency in vitro (8-log decrease) and in vivo (∼100% curing) in a Galleria mellonella infection model, as well as provided immunization against the invasion of IncFII plasmids once the system entering a susceptible bacterial host. INTERPRETATION: Overall, our work demonstrated the applicability of using native CRISPR-mediated plasmid curing to re-sensitize drug-resistant K. pneumoniae to multiple antibiotics. This work provided strong support for the idea of utilizing native CRISPR-Cas systems to tackle AMR in K. pneumoniae. FUNDING: This work was supported by research grants 10.13039/100014717National Natural Science Foundation of China [grant numbers 81871692, 82172315, 82102439, and 82202564], the 10.13039/501100003399Shanghai Science and Technology Commission [grant number 19JC1413002], and Shanghai Sailing Program [grant number 22YF1437500]. Elsevier 2023-01-23 /pmc/articles/PMC9879765/ /pubmed/36696817 http://dx.doi.org/10.1016/j.ebiom.2023.104445 Text en © 2023 Published by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Articles
Zhou, Ying
Yang, Yang
Li, Xiaobin
Tian, Dongxing
Ai, Wenxiu
Wang, Weiwen
Wang, Bingjie
Kreiswirth, Barry N.
Yu, Fangyou
Chen, Liang
Jiang, Xiaofei
Exploiting a conjugative endogenous CRISPR-Cas3 system to tackle multidrug-resistant Klebsiella pneumoniae
title Exploiting a conjugative endogenous CRISPR-Cas3 system to tackle multidrug-resistant Klebsiella pneumoniae
title_full Exploiting a conjugative endogenous CRISPR-Cas3 system to tackle multidrug-resistant Klebsiella pneumoniae
title_fullStr Exploiting a conjugative endogenous CRISPR-Cas3 system to tackle multidrug-resistant Klebsiella pneumoniae
title_full_unstemmed Exploiting a conjugative endogenous CRISPR-Cas3 system to tackle multidrug-resistant Klebsiella pneumoniae
title_short Exploiting a conjugative endogenous CRISPR-Cas3 system to tackle multidrug-resistant Klebsiella pneumoniae
title_sort exploiting a conjugative endogenous crispr-cas3 system to tackle multidrug-resistant klebsiella pneumoniae
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9879765/
https://www.ncbi.nlm.nih.gov/pubmed/36696817
http://dx.doi.org/10.1016/j.ebiom.2023.104445
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