Cargando…

An Outer Membrane Protein YiaD Contributes to Adaptive Resistance of Meropenem in Acinetobacter baumannii

Acinetobacter baumannii is an important nosocomial pathogen that can develop various resistance mechanisms to many antibiotics. However, little is known about how it evolves from an antibiotic sensitive to a resistant phenotype. In this study, we investigated the transition of outer membrane protein...

Descripción completa

Detalles Bibliográficos
Autores principales: Han, Lei, Gao, Yiyuan, Liu, Yuqing, Yao, Siyu, Zhong, Shuyan, Zhang, Sirui, Wang, Jingdan, Mi, Peng, Wen, Yurong, Ouyang, Zhenlin, Zhang, Jing, Al-Shamiri, Mona Mohamed, Li, Pu, Han, Shaoshan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9045393/
https://www.ncbi.nlm.nih.gov/pubmed/35377216
http://dx.doi.org/10.1128/spectrum.00173-22
_version_ 1784695307420827648
author Han, Lei
Gao, Yiyuan
Liu, Yuqing
Yao, Siyu
Zhong, Shuyan
Zhang, Sirui
Wang, Jingdan
Mi, Peng
Wen, Yurong
Ouyang, Zhenlin
Zhang, Jing
Al-Shamiri, Mona Mohamed
Li, Pu
Han, Shaoshan
author_facet Han, Lei
Gao, Yiyuan
Liu, Yuqing
Yao, Siyu
Zhong, Shuyan
Zhang, Sirui
Wang, Jingdan
Mi, Peng
Wen, Yurong
Ouyang, Zhenlin
Zhang, Jing
Al-Shamiri, Mona Mohamed
Li, Pu
Han, Shaoshan
author_sort Han, Lei
collection PubMed
description Acinetobacter baumannii is an important nosocomial pathogen that can develop various resistance mechanisms to many antibiotics. However, little is known about how it evolves from an antibiotic sensitive to a resistant phenotype. In this study, we investigated the transition of outer membrane proteins (OMPs) under antibiotic stress and identified YiaD as an OMP marker involved in the development of adaptive resistance to meropenem (MEM) in A. baumannii. Following stimulation of a carbapenem-sensitive strain AB5116 with sub-MIC of MEM, yiaD showed significantly decreased expression, and this decrease continued with prolonged stimulation for 8 h. The downregulation of yiaD was not only observed in clinically sensitive strains but also in 45 carbapenem-resistant isolates that produced the β-lactamases TEM and OXA-23. However, the extent of the reduction of yiaD expression in resistant strains was less than that in sensitive strains. Lack of yiaD resulted in a 4-fold increase in the MIC of AB5116 to MEM. The same level of depressed susceptibility induced by yiaD deletion was observed in both a growth curve test and a survival rate assay. Moreover, the colony shape became enlarged and irregular after loss of yiaD, and the biofilm formation ability of A. baumannii was influenced by YiaD. These results suggest that YiaD could respond to the stimulus of MEM in A. baumannii with a downregulation trend that kept pace with the prolonged stimulation time, indicating that it participates in various routes to benefit MEM resistance evolution in both carbapenem-sensitive and -resistant A. baumannii strains. IMPORTANCE Acinetobacter baumannii can develop various resistance mechanisms to carbapenems. However, the factors involved in the evolutionary process that leads from transition to the sensitive to resistant phenotype are not clear. The outer membrane protein YiaD of A. baumannii was downregulated under the stress of meropenem (MEM), and its expression level was continuously reduced with prolonged stimulation time. The downregulation of yiaD was not only observed in sensitive strains but also in carbapenem-resistant isolates producing the β-lactamases TEM and OXA-23. However, the extent of yiaD reduction was less in resistant strains than in sensitive strains. Lack of yiaD resulted in an increased MEM MIC, enlarged and irregular colonies, and decreased biofilm formation ability. These results suggest that YiaD responds to MEM stimulus in A. baumannii and participates in the adaptive resistance of MEM in both carbapenem-sensitive and -resistant strains.
format Online
Article
Text
id pubmed-9045393
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-90453932022-04-28 An Outer Membrane Protein YiaD Contributes to Adaptive Resistance of Meropenem in Acinetobacter baumannii Han, Lei Gao, Yiyuan Liu, Yuqing Yao, Siyu Zhong, Shuyan Zhang, Sirui Wang, Jingdan Mi, Peng Wen, Yurong Ouyang, Zhenlin Zhang, Jing Al-Shamiri, Mona Mohamed Li, Pu Han, Shaoshan Microbiol Spectr Research Article Acinetobacter baumannii is an important nosocomial pathogen that can develop various resistance mechanisms to many antibiotics. However, little is known about how it evolves from an antibiotic sensitive to a resistant phenotype. In this study, we investigated the transition of outer membrane proteins (OMPs) under antibiotic stress and identified YiaD as an OMP marker involved in the development of adaptive resistance to meropenem (MEM) in A. baumannii. Following stimulation of a carbapenem-sensitive strain AB5116 with sub-MIC of MEM, yiaD showed significantly decreased expression, and this decrease continued with prolonged stimulation for 8 h. The downregulation of yiaD was not only observed in clinically sensitive strains but also in 45 carbapenem-resistant isolates that produced the β-lactamases TEM and OXA-23. However, the extent of the reduction of yiaD expression in resistant strains was less than that in sensitive strains. Lack of yiaD resulted in a 4-fold increase in the MIC of AB5116 to MEM. The same level of depressed susceptibility induced by yiaD deletion was observed in both a growth curve test and a survival rate assay. Moreover, the colony shape became enlarged and irregular after loss of yiaD, and the biofilm formation ability of A. baumannii was influenced by YiaD. These results suggest that YiaD could respond to the stimulus of MEM in A. baumannii with a downregulation trend that kept pace with the prolonged stimulation time, indicating that it participates in various routes to benefit MEM resistance evolution in both carbapenem-sensitive and -resistant A. baumannii strains. IMPORTANCE Acinetobacter baumannii can develop various resistance mechanisms to carbapenems. However, the factors involved in the evolutionary process that leads from transition to the sensitive to resistant phenotype are not clear. The outer membrane protein YiaD of A. baumannii was downregulated under the stress of meropenem (MEM), and its expression level was continuously reduced with prolonged stimulation time. The downregulation of yiaD was not only observed in sensitive strains but also in carbapenem-resistant isolates producing the β-lactamases TEM and OXA-23. However, the extent of yiaD reduction was less in resistant strains than in sensitive strains. Lack of yiaD resulted in an increased MEM MIC, enlarged and irregular colonies, and decreased biofilm formation ability. These results suggest that YiaD responds to MEM stimulus in A. baumannii and participates in the adaptive resistance of MEM in both carbapenem-sensitive and -resistant strains. American Society for Microbiology 2022-04-04 /pmc/articles/PMC9045393/ /pubmed/35377216 http://dx.doi.org/10.1128/spectrum.00173-22 Text en Copyright © 2022 Han et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Han, Lei
Gao, Yiyuan
Liu, Yuqing
Yao, Siyu
Zhong, Shuyan
Zhang, Sirui
Wang, Jingdan
Mi, Peng
Wen, Yurong
Ouyang, Zhenlin
Zhang, Jing
Al-Shamiri, Mona Mohamed
Li, Pu
Han, Shaoshan
An Outer Membrane Protein YiaD Contributes to Adaptive Resistance of Meropenem in Acinetobacter baumannii
title An Outer Membrane Protein YiaD Contributes to Adaptive Resistance of Meropenem in Acinetobacter baumannii
title_full An Outer Membrane Protein YiaD Contributes to Adaptive Resistance of Meropenem in Acinetobacter baumannii
title_fullStr An Outer Membrane Protein YiaD Contributes to Adaptive Resistance of Meropenem in Acinetobacter baumannii
title_full_unstemmed An Outer Membrane Protein YiaD Contributes to Adaptive Resistance of Meropenem in Acinetobacter baumannii
title_short An Outer Membrane Protein YiaD Contributes to Adaptive Resistance of Meropenem in Acinetobacter baumannii
title_sort outer membrane protein yiad contributes to adaptive resistance of meropenem in acinetobacter baumannii
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9045393/
https://www.ncbi.nlm.nih.gov/pubmed/35377216
http://dx.doi.org/10.1128/spectrum.00173-22
work_keys_str_mv AT hanlei anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT gaoyiyuan anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT liuyuqing anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT yaosiyu anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT zhongshuyan anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT zhangsirui anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT wangjingdan anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT mipeng anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT wenyurong anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT ouyangzhenlin anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT zhangjing anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT alshamirimonamohamed anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT lipu anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT hanshaoshan anoutermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT hanlei outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT gaoyiyuan outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT liuyuqing outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT yaosiyu outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT zhongshuyan outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT zhangsirui outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT wangjingdan outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT mipeng outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT wenyurong outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT ouyangzhenlin outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT zhangjing outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT alshamirimonamohamed outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT lipu outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii
AT hanshaoshan outermembraneproteinyiadcontributestoadaptiveresistanceofmeropeneminacinetobacterbaumannii