Cargando…

Phenotypic Variation and Carbapenem Resistance Potential in OXA-499-Producing Acinetobacter pittii

Acinetobacter pittii is increasingly recognized as a clinically important species. Here, we identified a carbapenem-non-resistant A. pittii clinical isolate, A1254, harboring bla(OXA–)(499), bla(OXA–)(826), and bla(ADC–)(221). The bla(OXA–)(499) genetic environment in A1254 was identical to that of...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Linyue, Fu, Ying, Han, Xinhong, Xu, Qingye, Weng, Shanshan, Yan, Biyong, Liu, Lilin, Hua, Xiaoting, Chen, Yan, Yu, Yunsong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7296048/
https://www.ncbi.nlm.nih.gov/pubmed/32582088
http://dx.doi.org/10.3389/fmicb.2020.01134
_version_ 1783546766810939392
author Zhang, Linyue
Fu, Ying
Han, Xinhong
Xu, Qingye
Weng, Shanshan
Yan, Biyong
Liu, Lilin
Hua, Xiaoting
Chen, Yan
Yu, Yunsong
author_facet Zhang, Linyue
Fu, Ying
Han, Xinhong
Xu, Qingye
Weng, Shanshan
Yan, Biyong
Liu, Lilin
Hua, Xiaoting
Chen, Yan
Yu, Yunsong
author_sort Zhang, Linyue
collection PubMed
description Acinetobacter pittii is increasingly recognized as a clinically important species. Here, we identified a carbapenem-non-resistant A. pittii clinical isolate, A1254, harboring bla(OXA–)(499), bla(OXA–)(826), and bla(ADC–)(221). The bla(OXA–)(499) genetic environment in A1254 was identical to that of another OXA-499-producing, but carbapenem-resistant, A. pittii isolate, YMC2010/8/T346, indicating the existence of phenotypic variation among OXA-499-producing A. pittii strains. Under imipenem-selective pressure, the A1254 isolate developed resistance to carbapenems in 60 generations. Two carbapenem-resistant mutants (CAB009 and CAB010) with mutations in the bla(OXA–)(499) promoter region were isolated from two independently evolved populations (CAB001 and CAB004). The CAB009 mutant, with a mutation at position −14 (A to G), exhibited a four-fold higher carbapenem minimum inhibitory concentration (MIC) and a 4.53 ± 0.19 log(2) fold change higher expression level of bla(OXA–)(499) than the ancestor strain, A1254. The other mutant, CAB010, with a mutation at position −42 (G to A), showed a two-fold higher carbapenem MIC and a 1.65 ± 0.25 log(2) fold change higher bla(OXA–)(499) expression level than the ancestor strain. The bla(OXA–)(499) gene and its promoter region were amplified from the wild-type strain and two mutant isolates and then individually cloned into the pYMAb2-Hyg(r) vector and expressed in Acinetobacter baumannii ATCC 17978, A. pittii LMG 1035, and A. pittii A1254. All the transformed strains were resistant to carbapenem, irrespective of whether they harbored the initial or an evolved promoter sequence, and transformed strains expressing the promoter from the most resistant mutant, CAB009, showed the highest carbapenem MICs, with values of 32–64 μg/ml for imipenem and 128 μg/ml for meropenem. RNA sequencing was performed to confirm the contribution of bla(OXA–)(499) to the development of carbapenem resistance. Although the CAB009 and CAB010 transcriptional patterns were different, bla(OXA–)(499) was the only differentially expressed gene shared by the two mutants. Our results indicate that carbapenem-non-resistant Acinetobacter spp. strains carrying bla(OXA) genes have the potential to develop carbapenem resistance and need to be further investigated and monitored to prevent treatment failure due to the development of resistance.
format Online
Article
Text
id pubmed-7296048
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-72960482020-06-23 Phenotypic Variation and Carbapenem Resistance Potential in OXA-499-Producing Acinetobacter pittii Zhang, Linyue Fu, Ying Han, Xinhong Xu, Qingye Weng, Shanshan Yan, Biyong Liu, Lilin Hua, Xiaoting Chen, Yan Yu, Yunsong Front Microbiol Microbiology Acinetobacter pittii is increasingly recognized as a clinically important species. Here, we identified a carbapenem-non-resistant A. pittii clinical isolate, A1254, harboring bla(OXA–)(499), bla(OXA–)(826), and bla(ADC–)(221). The bla(OXA–)(499) genetic environment in A1254 was identical to that of another OXA-499-producing, but carbapenem-resistant, A. pittii isolate, YMC2010/8/T346, indicating the existence of phenotypic variation among OXA-499-producing A. pittii strains. Under imipenem-selective pressure, the A1254 isolate developed resistance to carbapenems in 60 generations. Two carbapenem-resistant mutants (CAB009 and CAB010) with mutations in the bla(OXA–)(499) promoter region were isolated from two independently evolved populations (CAB001 and CAB004). The CAB009 mutant, with a mutation at position −14 (A to G), exhibited a four-fold higher carbapenem minimum inhibitory concentration (MIC) and a 4.53 ± 0.19 log(2) fold change higher expression level of bla(OXA–)(499) than the ancestor strain, A1254. The other mutant, CAB010, with a mutation at position −42 (G to A), showed a two-fold higher carbapenem MIC and a 1.65 ± 0.25 log(2) fold change higher bla(OXA–)(499) expression level than the ancestor strain. The bla(OXA–)(499) gene and its promoter region were amplified from the wild-type strain and two mutant isolates and then individually cloned into the pYMAb2-Hyg(r) vector and expressed in Acinetobacter baumannii ATCC 17978, A. pittii LMG 1035, and A. pittii A1254. All the transformed strains were resistant to carbapenem, irrespective of whether they harbored the initial or an evolved promoter sequence, and transformed strains expressing the promoter from the most resistant mutant, CAB009, showed the highest carbapenem MICs, with values of 32–64 μg/ml for imipenem and 128 μg/ml for meropenem. RNA sequencing was performed to confirm the contribution of bla(OXA–)(499) to the development of carbapenem resistance. Although the CAB009 and CAB010 transcriptional patterns were different, bla(OXA–)(499) was the only differentially expressed gene shared by the two mutants. Our results indicate that carbapenem-non-resistant Acinetobacter spp. strains carrying bla(OXA) genes have the potential to develop carbapenem resistance and need to be further investigated and monitored to prevent treatment failure due to the development of resistance. Frontiers Media S.A. 2020-06-09 /pmc/articles/PMC7296048/ /pubmed/32582088 http://dx.doi.org/10.3389/fmicb.2020.01134 Text en Copyright © 2020 Zhang, Fu, Han, Xu, Weng, Yan, Liu, Hua, Chen and Yu. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Zhang, Linyue
Fu, Ying
Han, Xinhong
Xu, Qingye
Weng, Shanshan
Yan, Biyong
Liu, Lilin
Hua, Xiaoting
Chen, Yan
Yu, Yunsong
Phenotypic Variation and Carbapenem Resistance Potential in OXA-499-Producing Acinetobacter pittii
title Phenotypic Variation and Carbapenem Resistance Potential in OXA-499-Producing Acinetobacter pittii
title_full Phenotypic Variation and Carbapenem Resistance Potential in OXA-499-Producing Acinetobacter pittii
title_fullStr Phenotypic Variation and Carbapenem Resistance Potential in OXA-499-Producing Acinetobacter pittii
title_full_unstemmed Phenotypic Variation and Carbapenem Resistance Potential in OXA-499-Producing Acinetobacter pittii
title_short Phenotypic Variation and Carbapenem Resistance Potential in OXA-499-Producing Acinetobacter pittii
title_sort phenotypic variation and carbapenem resistance potential in oxa-499-producing acinetobacter pittii
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7296048/
https://www.ncbi.nlm.nih.gov/pubmed/32582088
http://dx.doi.org/10.3389/fmicb.2020.01134
work_keys_str_mv AT zhanglinyue phenotypicvariationandcarbapenemresistancepotentialinoxa499producingacinetobacterpittii
AT fuying phenotypicvariationandcarbapenemresistancepotentialinoxa499producingacinetobacterpittii
AT hanxinhong phenotypicvariationandcarbapenemresistancepotentialinoxa499producingacinetobacterpittii
AT xuqingye phenotypicvariationandcarbapenemresistancepotentialinoxa499producingacinetobacterpittii
AT wengshanshan phenotypicvariationandcarbapenemresistancepotentialinoxa499producingacinetobacterpittii
AT yanbiyong phenotypicvariationandcarbapenemresistancepotentialinoxa499producingacinetobacterpittii
AT liulilin phenotypicvariationandcarbapenemresistancepotentialinoxa499producingacinetobacterpittii
AT huaxiaoting phenotypicvariationandcarbapenemresistancepotentialinoxa499producingacinetobacterpittii
AT chenyan phenotypicvariationandcarbapenemresistancepotentialinoxa499producingacinetobacterpittii
AT yuyunsong phenotypicvariationandcarbapenemresistancepotentialinoxa499producingacinetobacterpittii