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Updated: Aug 21, 2026

Biosensor for Detection of Antibiotic Resistant Staphylococcus Bacteria
Published on: May 8, 2013
Hospital transmission of methicillin-resistant Staphylococcus aureus driven by addictive mupA plasmids
Background:
Resistance to mupirocin, a cornerstone of Staphylococcus aureus decolonization, is a recognized cause of decolonization failure. Its role in hospital transmission is unknown.
Methods:
We conducted genomic surveillance of >10,000 S. aureus isolates from adult patients at two urban hospitals where mupirocin decolonization is routine. Bacterial phenotypes and fitness were evaluated in vitro and in murine colonization models to interpret surveillance results.
Results:
Genome sequencing identified 475 hospital transmission events; conventional surveillance detected none. The plasmid-mediated resistance determinant mupA ( ileS2 ) was enriched eightfold in methicillin-resistant S. aureus (MRSA) relative to methicillin-susceptible strains. mupA was associated with nearly threefold greater hospital transmission, especially within healthcare-associated MRSA lineages. Surprisingly, multiple independently evolved inactivating mutations in the essential chromosomal gene ileS1 co-occurred with mupA , creating plasmid addiction in which mupA became indispensable for bacterial survival. Plasmid carriage activated the stringent response and reduced colonization fitness, but also conferred collateral tolerance to disinfectants such as ethanol and peroxide. Although addiction further reduced S. aureus fitness, it increased plasmid transfer, promoting spread despite these costs. Unexpectedly, we found a mupirocin-dependent vulnerability to isoleucine limitation, revealing a potential strategy to target mupA -mediated resistance.
Conclusions:
Hospital transmission of mupirocin-resistant MRSA is promoted by plasmids that create an evolutionary trap in which mupirocin use selects for bacterial dependence on costly resistance elements. These findings suggest that reducing mupirocin use alone is unlikely to eliminate resistance, underscore the need for genomic surveillance and resistance testing, and provide a framework for strategies to preserve mupirocin effectiveness.
Major Point:
This work shows that mupirocin resistance promotes hospital transmission of MRSA, identifies a previously unappreciated mechanism of plasmid addiction, and exposes a collateral vulnerability. These findings underscore the need for genomic surveillance and provide a framework to preserve mupirocin effectiveness.
Insights
Mupirocin resistance in Staphylococcus aureus (S. aureus) promotes hospital transmission, particularly for methicillin-resistant S. aureus (MRSA). This resistance creates an evolutionary trap, highlighting the need for genomic surveillance and alternative strategies to maintain antibiotic effectiveness.
Area of Science:
- Microbiology
- Genomics
- Infectious Disease Epidemiology
Background:
- Mupirocin resistance is a known cause of Staphylococcus aureus decolonization failure.
- The role of mupirocin resistance in hospital transmission of S. aureus remains unclear.
Purpose of the Study:
- To investigate the role of mupirocin resistance in the hospital transmission of S. aureus.
- To understand the genetic and evolutionary mechanisms underlying mupirocin resistance in S. aureus.
Main Methods:
- Genomic surveillance of over 10,000 S. aureus isolates from two urban hospitals.
- In vitro and murine colonization model studies to evaluate bacterial phenotypes and fitness.
Main Results:
- Genomic sequencing identified 475 hospital transmission events, missed by conventional methods.
- Mupirocin resistance gene (mupA) was enriched in MRSA and associated with increased hospital transmission.
- Plasmid-mediated mupA, coupled with mutations in ileS1, created a plasmid addiction, increasing plasmid transfer despite fitness costs.
Conclusions:
- Mupirocin-resistant MRSA transmission is driven by plasmids creating an evolutionary trap.
- Reducing mupirocin use alone may not eliminate resistance; genomic surveillance and resistance testing are crucial.
- A potential strategy to target mupA-mediated resistance involves exploiting a mupirocin-dependent vulnerability to isoleucine limitation.
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Clinical Significance of Antibiotic Resistance
Mechanism of Antibiotic Resistance in MRSA
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