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Nanomechanics of Drug-target Interactions and Antibacterial Resistance Detection
Published on: October 25, 2013
Multiomics Substrates of Resistance to Emerging Pathogens? Transcriptome and Proteome Profile of a
Luís Pinto1,2,3, Carmen Torres4, Concha Gil5
1Department of Genetics and Biotechnology, University of Trás-os-Montes and Alto Douro, Vila Real, Portugal.
Abstract:
Antibiotic resistance and hospital acquired infections are on the rise worldwide. Vancomycin-resistant enterococci have been reported in clinical settings in recent decades. In this multiomics study, we provide comprehensive proteomic and transcriptomic analyses of a vancomycin-resistant Enterococcus faecalis clinical isolate from a patient with a urinary tract infection. The previous genotypic profile of the strain C2620 indicated the presence of antibiotic resistance genes characteristic of the vanB cluster. To further investigate the transcriptome of this pathogenic strain, we used whole genome sequencing and RNA-sequencing to detect and quantify the genes expressed. In parallel, we used two-dimensional gel electrophoresis followed by MALDI-TOF/MS (Matrix-assisted laser desorption/ionization-Time-of-flight/Mass spectrometry) to identify the proteins in the proteome. We studied the membrane and cytoplasm subproteomes separately. From a total of 207 analysis spots, we identified 118 proteins. The protein list was compared to the results obtained from the full transcriptome assay. Several genes and proteins related to stress and cellular response were identified, as well as some linked to antibiotic and drug responses, which is consistent with the known state of multiresistance. Even though the correlation between transcriptome and proteome data is not yet fully understood, the use of multiomics approaches has proven to be increasingly relevant to achieve deeper insights into the survival ability of pathogenic bacteria found in health care facilities.
Insights
This study used multiomics to analyze vancomycin-resistant Enterococcus faecalis, identifying stress and antibiotic response genes and proteins. These findings enhance understanding of pathogenic bacteria survival in healthcare settings.
Area of Science:
- Microbiology
- Genomics
- Proteomics
Background:
- Antibiotic resistance and hospital-acquired infections are increasing globally.
- Vancomycin-resistant enterococci (VRE) are a significant clinical concern.
- This study focuses on a vancomycin-resistant Enterococcus faecalis (VRE) clinical isolate.
Purpose of the Study:
- To conduct comprehensive proteomic and transcriptomic analyses of a VRE clinical isolate.
- To investigate gene and protein expression related to antibiotic resistance and bacterial survival.
- To explore the utility of multiomics approaches in understanding pathogenic bacteria.
Main Methods:
- Whole genome sequencing and RNA-sequencing for transcriptomic analysis.
- Two-dimensional gel electrophoresis and MALDI-TOF/MS for proteomic analysis.
- Separate analysis of membrane and cytoplasm subproteomes.
Main Results:
- Identified 118 proteins from 207 analysis spots.
- Detected genes and proteins associated with stress, cellular response, and antibiotic resistance.
- Observed consistency between genotypic profile (vanB cluster) and observed resistance mechanisms.
Conclusions:
- Multiomics approaches provide deeper insights into pathogenic bacteria survival.
- Identified stress and antibiotic response elements are crucial for VRE in healthcare settings.
- Further research is needed to fully understand the correlation between transcriptome and proteome data.
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