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Biosensor for Detection of Antibiotic Resistant Staphylococcus Bacteria
Published on: May 8, 2013
Association of mprF mutations with cross-resistance to daptomycin and vancomycin in methicillin-resistant
Kanate Thitiananpakorn1, Yoshifumi Aiba1, Xin-Ee Tan1
1Division of Bacteriology, Department of Infection and Immunity, Faculty of Medicine, Jichi Medical University, 3311-1, Yakushiji, Shimotsuke-shi, Tochigi, 329-0498, Japan.
Abstract:
We first reported a phenomenon of cross-resistance to vancomycin (VCM) and daptomycin (DAP) in methicillin-resistant Staphylococcus aureus (MRSA) in 2006, but mechanisms underlying the cross-resistance remain incompletely understood. Here, we present a follow-up study aimed to investigate genetic determinants associated with the cross-resistance. Using 12 sets of paired DAP susceptible (DAPS) and DAP non-susceptible (DAPR) MRSA isolates from 12 patients who had DAP therapy, we (i) assessed susceptibility to DAP and VCM, (ii) compared whole-genome sequences, (iii) identified mutations associated with cross-resistance to DAP and VCM, and (iv) investigated the impact of altered gene expression and metabolic pathway relevant to the cross-resistance. We found that all 12 DAPR strains exhibiting cross-resistance to DAP and VCM carried mutations in mprF, while one DAPR strain with reduced susceptibility to only DAP carried a lacF mutation. On the other hand, among the 32 vancomycin-intermediate S. aureus (VISA) strains isolated from patients treated with VCM, five out of the 18 strains showing cross-resistance to DAP and VCM carried a mprF mutation, while 14 strains resistant to only VCM had no mprF mutation. Moreover, substitution of mprF in a DAPS strain with mutated mprF resulted in cross-resistance and vice versa. The elevated lysyl-phosphatidylglycerol (L-PG) production, increased positive bacterial surface charges and activated cell wall (CW) synthetic pathways were commonly found in both clinical isolates and laboratory-developed mutants that carry mprF mutations. We conclude that mprF mutation is responsible for the cross-resistance of MRSA to DAP and VCM, and treatment with DAP is more likely to select for mprF-mediated cross-resistance than is with VCM.
Insights
Mutations in the mprF gene are responsible for cross-resistance to vancomycin and daptomycin in methicillin-resistant Staphylococcus aureus (MRSA). Daptomycin treatment selects for mprF-mediated resistance more frequently than vancomycin.
Area of Science:
- Microbiology
- Genetics
- Infectious Diseases
Background:
- Cross-resistance to vancomycin (VCM) and daptomycin (DAP) in methicillin-resistant Staphylococcus aureus (MRSA) was previously reported, but underlying mechanisms remain unclear.
- Understanding these mechanisms is crucial for effective treatment of MRSA infections.
Purpose of the Study:
- To investigate the genetic determinants responsible for cross-resistance to VCM and DAP in MRSA.
- To identify specific mutations and their impact on bacterial physiology.
Main Methods:
- Comparative whole-genome sequencing of paired DAP-susceptible and DAP-non-susceptible MRSA isolates from patients treated with DAP.
- Susceptibility testing for DAP and VCM.
- Analysis of gene expression and metabolic pathways.
- Functional validation through gene substitution experiments.
Main Results:
- All DAP-non-susceptible MRSA strains exhibiting cross-resistance to DAP and VCM carried mutations in the mprF gene.
- A single DAP-non-susceptible strain with reduced susceptibility only to DAP had a lacF mutation.
- Five of 18 vancomycin-intermediate S. aureus (VISA) strains with cross-resistance to DAP and VCM had mprF mutations.
- Substitution of mprF in susceptible strains induced cross-resistance, and vice versa.
- mprF mutations correlated with elevated lysyl-phosphatidylglycerol (L-PG) production, increased positive bacterial surface charge, and activated cell wall synthesis.
Conclusions:
- Mutation in the mprF gene is the primary driver of cross-resistance to DAP and VCM in MRSA.
- DAP therapy is more likely to select for mprF-mediated cross-resistance compared to VCM therapy.
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