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Resistance mechanism of Escherichia coli strains with different ampicillin resistance levels
by
Türkyılmaz, Osman
, Darcan, Cihan
in
Ampicillin
/ Ampicillin - pharmacology
/ Ampicillin Resistance - genetics
/ Analysis
/ Anti-Bacterial Agents - pharmacology
/ Antibiotic resistance
/ Antibiotics
/ Biomedical and Life Sciences
/ Biotechnology
/ DNA sequencing
/ Drug resistance
/ Drug resistance in microorganisms
/ E coli
/ Escherichia coli
/ Escherichia coli - genetics
/ Gene Expression Profiling
/ Gene mutations
/ Gene sequencing
/ Genetic aspects
/ Genomics
/ Identification and classification
/ Life Sciences
/ Medical treatment
/ Methods
/ Microbial Genetics and Genomics
/ Microbiology
/ Microorganisms
/ Molecular modelling
/ Mutation
/ Nucleotide sequencing
/ Penicillin
/ Proteomics
/ Strains (organisms)
/ synergism
/ Synergistic effect
/ Transcriptomics
/ Whole genome sequencing
2024
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Resistance mechanism of Escherichia coli strains with different ampicillin resistance levels
by
Türkyılmaz, Osman
, Darcan, Cihan
in
Ampicillin
/ Ampicillin - pharmacology
/ Ampicillin Resistance - genetics
/ Analysis
/ Anti-Bacterial Agents - pharmacology
/ Antibiotic resistance
/ Antibiotics
/ Biomedical and Life Sciences
/ Biotechnology
/ DNA sequencing
/ Drug resistance
/ Drug resistance in microorganisms
/ E coli
/ Escherichia coli
/ Escherichia coli - genetics
/ Gene Expression Profiling
/ Gene mutations
/ Gene sequencing
/ Genetic aspects
/ Genomics
/ Identification and classification
/ Life Sciences
/ Medical treatment
/ Methods
/ Microbial Genetics and Genomics
/ Microbiology
/ Microorganisms
/ Molecular modelling
/ Mutation
/ Nucleotide sequencing
/ Penicillin
/ Proteomics
/ Strains (organisms)
/ synergism
/ Synergistic effect
/ Transcriptomics
/ Whole genome sequencing
2024
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Resistance mechanism of Escherichia coli strains with different ampicillin resistance levels
by
Türkyılmaz, Osman
, Darcan, Cihan
in
Ampicillin
/ Ampicillin - pharmacology
/ Ampicillin Resistance - genetics
/ Analysis
/ Anti-Bacterial Agents - pharmacology
/ Antibiotic resistance
/ Antibiotics
/ Biomedical and Life Sciences
/ Biotechnology
/ DNA sequencing
/ Drug resistance
/ Drug resistance in microorganisms
/ E coli
/ Escherichia coli
/ Escherichia coli - genetics
/ Gene Expression Profiling
/ Gene mutations
/ Gene sequencing
/ Genetic aspects
/ Genomics
/ Identification and classification
/ Life Sciences
/ Medical treatment
/ Methods
/ Microbial Genetics and Genomics
/ Microbiology
/ Microorganisms
/ Molecular modelling
/ Mutation
/ Nucleotide sequencing
/ Penicillin
/ Proteomics
/ Strains (organisms)
/ synergism
/ Synergistic effect
/ Transcriptomics
/ Whole genome sequencing
2024
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Resistance mechanism of Escherichia coli strains with different ampicillin resistance levels
Journal Article
Resistance mechanism of Escherichia coli strains with different ampicillin resistance levels
2024
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Overview
Antibiotic resistance is an important problem that threatens medical treatment. Differences in the resistance levels of microorganisms cause great difficulties in understanding the mechanisms of antibiotic resistance. Therefore, the molecular reasons underlying the differences in the level of antibiotic resistance need to be clarified. For this purpose, genomic and transcriptomic analyses were performed on three
Escherichia coli
strains with varying degrees of adaptive resistance to ampicillin. Whole-genome sequencing of strains with different levels of resistance detected five mutations in strains with 10-fold resistance and two additional mutations in strains with 95-fold resistance. Overall, three of the seven mutations occurred as a single base change, while the other four occurred as insertions or deletions. While it was thought that 10-fold resistance was achieved by the effect of mutations in the
ftsI
,
marAR
, and
rpoC
genes, it was found that 95-fold resistance was achieved by the synergistic effect of five mutations and the
ampC
mutation. In addition, when the general transcriptomic profiles were examined, it was found that similar transcriptomic responses were elicited in strains with different levels of resistance. This study will improve our view of resistance mechanisms in bacteria with different levels of resistance and provide the basis for our understanding of the molecular mechanism of antibiotic resistance in ampicillin-resistant
E. coli
strains.
Key points
•
The mutation of the ampC promoter may act synergistically with other mutations and lead to higher resistance.
•
Similar transcriptomic responses to ampicillin are induced in strains with different levels of resistance.
•
Low antibiotic concentrations are the steps that allow rapid achievement of high antibiotic resistance.
Publisher
Springer Berlin Heidelberg,Springer,Springer Nature B.V
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