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Subcutaneous Infection of Methicillin Resistant Staphylococcus Aureus MRSA
Published on: February 9, 2011
RelQ Mediates the Expression of β-Lactam Resistance in Methicillin-Resistant Staphylococcus aureus
Ajita Bhawini1, Parul Pandey2, Ashutosh Prakash Dubey2
1Department of Microbiology, Institute of Medical Sciences, Banaras Hindu University, Varanasi, India.
Abstract:
An induced stringent response, which is established by an increased level of (p)ppGpp, is required for the expression of β-lactam resistance in methicillin-resistant Staphylococcus aureus (MRSA). However, it is not clear whether RSH (enzyme mediating stringent response to amino acid starvation) or small alarmone synthetases (SASs) are involved in the maintenance of (p)ppGpp level in response to β-lactams. Since the S. aureus genome encodes two active SASs (RelP and RelQ), their contribution to the expression of β-lactam resistance in MRSA was investigated. It was determined that relQ deletion renders community-associated MRSA (CA-MRSA) sensitive to β-lactams by negatively affecting the expression of mecA, and induction of (p)ppGpp synthesis by mupirocin bypasses the requirement of relQ for the expression of high-level β-lactam resistance. Surprisingly, relP deletion increased the level of β-lactam resistance. Such contradictory observations could be attributed to the fact that relQ promoter is ~5-fold stronger than the relP and is induced by oxacillin as well as deletion of either of the SASs, while relP promoter responds only to oxacillin. The stronger promoter activity of relQ, coupled with the inducibility of the relQ promoter in response to the lack of relP, results in efficient expression of relQ in the relP-deleted background. This positively affects mecA expression and renders the ΔrelP strain highly resistant. These findings indicate an important role for RelQ in the expression of high-level β-lactam resistance in MRSA.
Insights
Small alarmone synthetases (SASs) RelP and RelQ are crucial for beta-lactam resistance in methicillin-resistant Staphylococcus aureus (MRSA). RelQ deletion sensitizes MRSA to beta-lactams, while RelP deletion enhances resistance.
Area of Science:
- Microbiology
- Molecular Biology
- Antimicrobial Resistance
Background:
- Beta-lactam resistance in MRSA is linked to stringent response mediated by (p)ppGpp.
- The roles of RelA-SpoT homolog (RSH) enzymes and small alarmone synthetases (SASs) in maintaining (p)ppGpp levels during beta-lactam exposure are unclear.
Purpose of the Study:
- To investigate the contribution of two S. aureus SASs, RelP and RelQ, to beta-lactam resistance in MRSA.
- To elucidate the mechanisms underlying the differential effects of RelP and RelQ on beta-lactam resistance.
Main Methods:
- Gene deletion mutants (ΔrelQ, ΔrelP) of community-associated MRSA (CA-MRSA) were created.
- Beta-lactam susceptibility testing was performed.
- (p)ppGpp synthesis was induced using mupirocin.
- mecA gene expression was analyzed.
- Promoter activities of relP and relQ were compared.
Main Results:
- Deletion of relQ significantly reduced beta-lactam resistance in CA-MRSA by impairing mecA expression.
- Induction of (p)ppGpp synthesis bypassed the need for relQ in conferring high-level beta-lactam resistance.
- Surprisingly, deletion of relP resulted in increased beta-lactam resistance.
- relQ exhibits a stronger promoter activity and is induced by oxacillin, unlike relP.
- The enhanced expression of relQ in the ΔrelP background positively impacts mecA expression, leading to higher resistance.
Conclusions:
- RelQ plays a critical role in establishing high-level beta-lactam resistance in MRSA.
- The interplay between RelP and RelQ, influenced by promoter strength and inducibility, determines the level of beta-lactam resistance.
- Targeting SASs offers a potential strategy for combating MRSA infections.
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