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Methodology for the Study of Horizontal Gene Transfer in Staphylococcus aureus
Published on: March 10, 2017
Identification of a highly transmissible animal-independent Staphylococcus aureus ST398 clone with distinct genomic
Anne-Catrin Uhlemann1, Stephen F Porcella, Sheetal Trivedi
1Department of Medicine, Division of Infectious Diseases, College of Physicians and Surgeons, Columbia University, New York, New York, USA. au2110@columbia.edu
Unlabelled:
A methicillin-resistant Staphylococcus aureus (MRSA) clone known as ST398 has emerged as a major cause of acute infections in individuals who have close contact with livestock. More recently, the emergence of an animal-independent ST398 methicillin-sensitive S. aureus (MSSA) clone has been documented in several countries. However, the limited surveillance of MSSA has precluded an accurate assessment of the global spread of ST398 and its clinical relevance. Here we provide evidence that ST398 is a frequent source of MSSA infections in northern Manhattan and is readily transmitted between individuals in households. This contrasts with the limited transmissibility of livestock-associated ST398 (LA-ST398) MRSA strains between humans. Our whole-genome sequence analysis revealed that the chromosome of the human-associated ST398 MSSA clone is smaller than that of the LA-ST398 MRSA reference strain S0385, due mainly to fewer mobile genetic elements (MGEs). In contrast, human ST398 MSSA isolates harbored the prophage ϕ3 and the human-specific immune evasion cluster (IEC) genes chp and scn. While most of the core genome was conserved between the human ST398 MSSA clone and S0385, these strains differed substantially in their repertoire and composition of intact adhesion genes. These genetic changes were associated with significantly enhanced adhesion of human ST398 MSSA isolates to human skin keratinocytes and keratin. We propose that the human ST398 MSSA clone can spread independent of animal contact using an optimized repertoire of MGEs and adhesion molecules adapted to transmission among humans.
Importance:
Staphylococcus aureus strains have generally been considered to be species specific. However, cross-species transfers of S. aureus clones, such as ST398 methicillin-resistant S. aureus (MRSA), from swine to humans have been reported. Recently, we observed the emergence of ST398 methicillin-susceptible S. aureus (MSSA) as a colonizing strain of humans in northern Manhattan. Here we report that ST398 is a frequent cause of MSSA infections in this urban setting. The ST398 MSSA clone was readily transmitted within households, independent of animal contact. We discovered that human ST398 MSSA genomes were smaller than that of the LA-ST398 strain S0385 due to fewer mobile genetic elements. Human and LA-ST398 strains also differed in their composition of adhesion genes and their ability to bind to human skin keratinocytes, providing a potential mechanism of S. aureus host adaptation. Our findings illustrate the importance of implementing molecular surveillance of MSSA given the evidence for the rapid and clinically undetected spread of ST398 MSSA.
Insights
A new clone of methicillin-susceptible Staphylococcus aureus (MSSA) ST398 is spreading in human populations, independent of animal contact. This human-adapted MSSA ST398 clone shows enhanced adhesion and household transmission, unlike its livestock-associated MRSA counterpart.
Area of Science:
- Microbiology
- Genomics
- Infectious Diseases
Background:
- Methicillin-resistant Staphylococcus aureus (MRSA) ST398 is linked to livestock.
- Emergence of animal-independent ST398 methicillin-susceptible S. aureus (MSSA) is noted globally.
- Limited MSSA surveillance hinders understanding of ST398 spread and clinical relevance.
Purpose of the Study:
- Investigate the prevalence and transmission of ST398 MSSA in an urban setting.
- Compare genetic features of human-associated ST398 MSSA with livestock-associated MRSA (LA-ST398).
- Determine the role of genetic differences in human adaptation and adhesion.
Main Methods:
- Whole-genome sequencing of ST398 MSSA and LA-ST398 MRSA isolates.
- Comparative genomic analysis focusing on mobile genetic elements and adhesion genes.
- In vitro adhesion assays using human skin keratinocytes and keratin.
Main Results:
- ST398 MSSA is a frequent cause of infections in northern Manhattan.
- Human ST398 MSSA exhibits efficient household transmission, distinct from LA-ST398 MRSA.
- Human ST398 MSSA genomes are smaller, with fewer mobile genetic elements but possess human-specific immune evasion genes and enhanced adhesion to human keratinocytes.
Conclusions:
- A human-adapted ST398 MSSA clone spreads independently of animal contact.
- Genetic modifications, including altered adhesion molecules, facilitate human-to-human transmission.
- Molecular surveillance of MSSA is crucial to track the spread of emerging clones like ST398.
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