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Published on: February 7, 2013
Staphylococcus saprophyticus Causing Infections in Humans Is Associated with High Resistance to Heavy Metals
Opeyemi U Lawal1,2, Maria J Fraqueza3, Peder Worning4
1Laboratory of Bacterial Evolution and Molecular Epidemiology, Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa (ITQB-NOVA), Oeiras, Portugal.
Abstract:
Staphylococcus saprophyticus is a common pathogen of the urinary tract, a heavy metal-rich environment, but information regarding its heavy metal resistance is unknown. We investigated 422 S. saprophyticus isolates from human infection and colonization/contamination, animals, and environmental sources for resistance to copper, zinc, arsenic, and cadmium using the agar dilution method. To identify the genes associated with metal resistance and assess possible links to pathogenicity, we accessed the whole-genome sequence of all isolates and used in silico and pangenome-wide association approaches. The MIC values for copper and zinc were uniformly high (1,600 mg/liter). Genes encoding copper efflux pumps (copA, copB, copZ, mco, and csoR) and zinc transporters (zinT, czrAB, znuBC, and zur) were abundant in the population (20 to 100%). Arsenic and cadmium showed various susceptibility levels. Genes encoding the ars operon (arsRDABC), an ABC transporter and a two-component permease, were linked to resistance to arsenic (MICs ≥ 1,600 mg/liter; 14% [58/422]; P < 0.05). At least three cad genes (cadA or cadC and cadD-cadX or czrC) and genes encoding multidrug efflux pumps and hyperosmoregulation in acidified conditions were associated with resistance to cadmium (MICs ≥ 200 mg/liter; 20% [85/422]; P < 0.05). These resistance genes were frequently carried by mobile genetic elements. Resistance to arsenic and cadmium were linked to human infection and a clonal lineage originating in animals (P < 0.05). Altogether, S. saprophyticus was highly resistant to heavy metals and accumulated multiple metal resistance determinants. The highest arsenic and cadmium resistance levels were associated with infection, suggesting resistance to these metals is relevant for S. saprophyticus pathogenicity.
Insights
Staphylococcus saprophyticus exhibits high resistance to heavy metals like copper, zinc, arsenic, and cadmium. This metal resistance, particularly to arsenic and cadmium, is linked to human infections, suggesting its role in pathogenicity.
Area of Science:
- Microbiology
- Environmental Science
- Genetics
Background:
- Staphylococcus saprophyticus is a common urinary tract pathogen.
- The urinary tract is a heavy metal-rich environment.
- Information on S. saprophyticus heavy metal resistance is limited.
Purpose of the Study:
- Investigate heavy metal resistance in S. saprophyticus.
- Identify genes associated with metal resistance.
- Assess links between metal resistance and pathogenicity.
Main Methods:
- Analyzed 422 S. saprophyticus isolates from various sources.
- Determined resistance to copper, zinc, arsenic, and cadmium using agar dilution.
- Utilized whole-genome sequencing, in silico, and pangenome-wide association studies.
Main Results:
- High resistance to copper and zinc observed (MICs ≥ 1,600 mg/liter).
- Arsenic resistance linked to the ars operon; cadmium resistance linked to cad genes and efflux pumps.
- Resistance genes often located on mobile genetic elements.
- Arsenic and cadmium resistance associated with human infections and animal-origin clonal lineages.
Conclusions:
- S. saprophyticus demonstrates significant heavy metal resistance with multiple resistance determinants.
- Arsenic and cadmium resistance are linked to pathogenicity in human infections.
- Mobile genetic elements facilitate the spread of metal resistance genes.
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