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Polymyxins Bind to the Cell Surface of Unculturable Acinetobacter baumannii and Cause Unique Dependent Resistance

Multidrug‐resistant Acinetobacter baumannii is a top‐priority pathogen globally and polymyxins are a last‐line therapy. Polymyxin dependence in A. baumannii (i.e., nonculturable on agar without polymyxins) is a unique and highly‐resistant phenotype with a significant potential to cause treatment fai...

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Autores principales: Zhu, Yan, Lu, Jing, Han, Mei‐Ling, Jiang, Xukai, Azad, Mohammad A. K., Patil, Nitin A., Lin, Yu‐Wei, Zhao, Jinxin, Hu, Yang, Yu, Heidi H., Chen, Ke, Boyce, John D., Dunstan, Rhys A., Lithgow, Trevor, Barlow, Christopher K., Li, Weifeng, Schneider‐Futschik, Elena K., Wang, Jiping, Gong, Bin, Sommer, Bjorn, Creek, Darren J., Fu, Jing, Wang, Lushan, Schreiber, Falk, Velkov, Tony, Li, Jian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7403960/
https://www.ncbi.nlm.nih.gov/pubmed/32775156
http://dx.doi.org/10.1002/advs.202000704
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author Zhu, Yan
Lu, Jing
Han, Mei‐Ling
Jiang, Xukai
Azad, Mohammad A. K.
Patil, Nitin A.
Lin, Yu‐Wei
Zhao, Jinxin
Hu, Yang
Yu, Heidi H.
Chen, Ke
Boyce, John D.
Dunstan, Rhys A.
Lithgow, Trevor
Barlow, Christopher K.
Li, Weifeng
Schneider‐Futschik, Elena K.
Wang, Jiping
Gong, Bin
Sommer, Bjorn
Creek, Darren J.
Fu, Jing
Wang, Lushan
Schreiber, Falk
Velkov, Tony
Li, Jian
author_facet Zhu, Yan
Lu, Jing
Han, Mei‐Ling
Jiang, Xukai
Azad, Mohammad A. K.
Patil, Nitin A.
Lin, Yu‐Wei
Zhao, Jinxin
Hu, Yang
Yu, Heidi H.
Chen, Ke
Boyce, John D.
Dunstan, Rhys A.
Lithgow, Trevor
Barlow, Christopher K.
Li, Weifeng
Schneider‐Futschik, Elena K.
Wang, Jiping
Gong, Bin
Sommer, Bjorn
Creek, Darren J.
Fu, Jing
Wang, Lushan
Schreiber, Falk
Velkov, Tony
Li, Jian
author_sort Zhu, Yan
collection PubMed
description Multidrug‐resistant Acinetobacter baumannii is a top‐priority pathogen globally and polymyxins are a last‐line therapy. Polymyxin dependence in A. baumannii (i.e., nonculturable on agar without polymyxins) is a unique and highly‐resistant phenotype with a significant potential to cause treatment failure in patients. The present study discovers that a polymyxin‐dependent A. baumannii strain possesses mutations in both lpxC (lipopolysaccharide biosynthesis) and katG (reactive oxygen species scavenging) genes. Correlative multiomics analyses show a significantly remodeled cell envelope and remarkably abundant phosphatidylglycerol in the outer membrane (OM). Molecular dynamics simulations and quantitative membrane lipidomics reveal that polymyxin‐dependent growth emerges only when the lipopolysaccharide‐deficient OM distinctively remodels with ≥ 35% phosphatidylglycerol, and with “patch” binding on the OM by the rigid polymyxin molecules containing strong intramolecular hydrogen bonding. Rather than damaging the OM, polymyxins bind to the phosphatidylglycerol‐rich OM and strengthen the membrane integrity, thereby protecting bacteria from external reactive oxygen species. Dependent growth is observed exclusively with polymyxin analogues, indicating a critical role of the specific amino acid sequence of polymyxins in forming unique structures for patch‐binding to bacterial OM. Polymyxin dependence is a novel antibiotic resistance mechanism and the current findings highlight the risk of ‘invisible’ polymyxin‐dependent isolates in the evolution of resistance.
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spelling pubmed-74039602020-08-06 Polymyxins Bind to the Cell Surface of Unculturable Acinetobacter baumannii and Cause Unique Dependent Resistance Zhu, Yan Lu, Jing Han, Mei‐Ling Jiang, Xukai Azad, Mohammad A. K. Patil, Nitin A. Lin, Yu‐Wei Zhao, Jinxin Hu, Yang Yu, Heidi H. Chen, Ke Boyce, John D. Dunstan, Rhys A. Lithgow, Trevor Barlow, Christopher K. Li, Weifeng Schneider‐Futschik, Elena K. Wang, Jiping Gong, Bin Sommer, Bjorn Creek, Darren J. Fu, Jing Wang, Lushan Schreiber, Falk Velkov, Tony Li, Jian Adv Sci (Weinh) Full Papers Multidrug‐resistant Acinetobacter baumannii is a top‐priority pathogen globally and polymyxins are a last‐line therapy. Polymyxin dependence in A. baumannii (i.e., nonculturable on agar without polymyxins) is a unique and highly‐resistant phenotype with a significant potential to cause treatment failure in patients. The present study discovers that a polymyxin‐dependent A. baumannii strain possesses mutations in both lpxC (lipopolysaccharide biosynthesis) and katG (reactive oxygen species scavenging) genes. Correlative multiomics analyses show a significantly remodeled cell envelope and remarkably abundant phosphatidylglycerol in the outer membrane (OM). Molecular dynamics simulations and quantitative membrane lipidomics reveal that polymyxin‐dependent growth emerges only when the lipopolysaccharide‐deficient OM distinctively remodels with ≥ 35% phosphatidylglycerol, and with “patch” binding on the OM by the rigid polymyxin molecules containing strong intramolecular hydrogen bonding. Rather than damaging the OM, polymyxins bind to the phosphatidylglycerol‐rich OM and strengthen the membrane integrity, thereby protecting bacteria from external reactive oxygen species. Dependent growth is observed exclusively with polymyxin analogues, indicating a critical role of the specific amino acid sequence of polymyxins in forming unique structures for patch‐binding to bacterial OM. Polymyxin dependence is a novel antibiotic resistance mechanism and the current findings highlight the risk of ‘invisible’ polymyxin‐dependent isolates in the evolution of resistance. John Wiley and Sons Inc. 2020-06-08 /pmc/articles/PMC7403960/ /pubmed/32775156 http://dx.doi.org/10.1002/advs.202000704 Text en © 2020 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Zhu, Yan
Lu, Jing
Han, Mei‐Ling
Jiang, Xukai
Azad, Mohammad A. K.
Patil, Nitin A.
Lin, Yu‐Wei
Zhao, Jinxin
Hu, Yang
Yu, Heidi H.
Chen, Ke
Boyce, John D.
Dunstan, Rhys A.
Lithgow, Trevor
Barlow, Christopher K.
Li, Weifeng
Schneider‐Futschik, Elena K.
Wang, Jiping
Gong, Bin
Sommer, Bjorn
Creek, Darren J.
Fu, Jing
Wang, Lushan
Schreiber, Falk
Velkov, Tony
Li, Jian
Polymyxins Bind to the Cell Surface of Unculturable Acinetobacter baumannii and Cause Unique Dependent Resistance
title Polymyxins Bind to the Cell Surface of Unculturable Acinetobacter baumannii and Cause Unique Dependent Resistance
title_full Polymyxins Bind to the Cell Surface of Unculturable Acinetobacter baumannii and Cause Unique Dependent Resistance
title_fullStr Polymyxins Bind to the Cell Surface of Unculturable Acinetobacter baumannii and Cause Unique Dependent Resistance
title_full_unstemmed Polymyxins Bind to the Cell Surface of Unculturable Acinetobacter baumannii and Cause Unique Dependent Resistance
title_short Polymyxins Bind to the Cell Surface of Unculturable Acinetobacter baumannii and Cause Unique Dependent Resistance
title_sort polymyxins bind to the cell surface of unculturable acinetobacter baumannii and cause unique dependent resistance
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7403960/
https://www.ncbi.nlm.nih.gov/pubmed/32775156
http://dx.doi.org/10.1002/advs.202000704
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