Matches in SemOpenAlex for { <https://semopenalex.org/work/W4289335841> ?p ?o ?g. }
- W4289335841 abstract "Adaptive laboratory evolution (ALE) is a useful tool to study the evolution of antibiotic tolerance in bacterial populations under diverse environmental conditions. The role of population bottlenecks in the evolution of tolerance has been investigated in Escherichia coli, but not in a more clinically relevant pathogen, methicillin-resistant Staphylococcus aureus (MRSA). In this study, we used ALE to evolve MRSA under repetitive daptomycin treatment and incorporated population bottlenecks following antibiotic exposure. We observed that the populations finally attained a tolerance mutation in the yycH gene after 2 weeks of evolution with population bottlenecks, and additional mutations in yycI and several other genes further increased the tolerance level. The tolerant populations also became resistant to another glycopeptide antibiotic, vancomycin. Through proteomics, we showed that yycH and yycI mutations led to the loss of function of the proteins and downregulated the WalKR two-component system and the downstream players, including the autolysin Atl and amidase Sle1, which are important for cell wall metabolism. Overall, our study offers new insights into the evolution of daptomycin tolerance under population bottlenecking conditions, which are commonly faced by pathogens during infection; the study also identified new mutations conferring daptomycin tolerance and revealed the proteome alterations in the evolved tolerant populations. IMPORTANCE Although population bottlenecks are known to influence the evolutionary dynamics of microbial populations, how such bottlenecks affect the evolution of tolerance to antibiotics in a clinically relevant methicillin-resistant S. aureus (MRSA) pathogen are still unclear. Here, we performed in vitro evolution of MRSA under cyclic daptomycin treatment and applied population bottlenecks following the treatment. We showed that under these experimental conditions, MRSA populations finally attained mutations in yycH, yycI, and several other genes that led to daptomycin tolerance. The discovered yycH and yycI mutations caused early termination of the genes and loss of function of the proteins, and they subsequently downregulated the expression of proteins controlled by the WalKR two-component system, such as Atl and Sle1. In addition, we compared our proteomics data with multiple studies on distinct daptomycin-tolerant MRSA mutants to identify proteins with a consistent expression pattern that could serve as biological markers for daptomycin tolerance in MRSA." @default.
- W4289335841 created "2022-08-02" @default.
- W4289335841 creator A5033962916 @default.
- W4289335841 creator A5043381222 @default.
- W4289335841 creator A5085021194 @default.
- W4289335841 date "2022-08-31" @default.
- W4289335841 modified "2023-10-14" @default.
- W4289335841 title "Mutation in the Two-Component System Regulator YycH Leads to Daptomycin Tolerance in Methicillin-Resistant Staphylococcus aureus upon Evolution with a Population Bottleneck" @default.
- W4289335841 cites W1507853369 @default.
- W4289335841 cites W1792186902 @default.
- W4289335841 cites W1974903759 @default.
- W4289335841 cites W1978679483 @default.
- W4289335841 cites W2015785632 @default.
- W4289335841 cites W2020962641 @default.
- W4289335841 cites W2021341670 @default.
- W4289335841 cites W2027974246 @default.
- W4289335841 cites W2029505099 @default.
- W4289335841 cites W2032601646 @default.
- W4289335841 cites W2034747690 @default.
- W4289335841 cites W2039538011 @default.
- W4289335841 cites W2050041244 @default.
- W4289335841 cites W2067928590 @default.
- W4289335841 cites W2089273345 @default.
- W4289335841 cites W2096193010 @default.
- W4289335841 cites W2096763392 @default.
- W4289335841 cites W2098499925 @default.
- W4289335841 cites W2099157811 @default.
- W4289335841 cites W2103441770 @default.
- W4289335841 cites W2108234281 @default.
- W4289335841 cites W2110055201 @default.
- W4289335841 cites W2112078820 @default.
- W4289335841 cites W2121537410 @default.
- W4289335841 cites W2123697895 @default.
- W4289335841 cites W2130412867 @default.
- W4289335841 cites W2131953542 @default.
- W4289335841 cites W2137043026 @default.
- W4289335841 cites W2138701259 @default.
- W4289335841 cites W2146370523 @default.
- W4289335841 cites W2150927648 @default.
- W4289335841 cites W2153406643 @default.
- W4289335841 cites W2157265409 @default.
- W4289335841 cites W2158217645 @default.
- W4289335841 cites W2160053034 @default.
- W4289335841 cites W2194639874 @default.
- W4289335841 cites W2308104112 @default.
- W4289335841 cites W2319149979 @default.
- W4289335841 cites W2396929167 @default.
- W4289335841 cites W2511476802 @default.
- W4289335841 cites W2527321527 @default.
- W4289335841 cites W2532545043 @default.
- W4289335841 cites W2537623931 @default.
- W4289335841 cites W2586590237 @default.
- W4289335841 cites W2766289436 @default.
- W4289335841 cites W2769324052 @default.
- W4289335841 cites W2897465175 @default.
- W4289335841 cites W2906148674 @default.
- W4289335841 cites W2911945914 @default.
- W4289335841 cites W2946250358 @default.
- W4289335841 cites W2952907530 @default.
- W4289335841 cites W2955249862 @default.
- W4289335841 cites W2996818947 @default.
- W4289335841 cites W2998807596 @default.
- W4289335841 cites W3000309623 @default.
- W4289335841 cites W3002801282 @default.
- W4289335841 cites W3005225202 @default.
- W4289335841 cites W3034531780 @default.
- W4289335841 cites W3034703424 @default.
- W4289335841 cites W3045935955 @default.
- W4289335841 cites W3082500426 @default.
- W4289335841 cites W3094173043 @default.
- W4289335841 cites W3135193878 @default.
- W4289335841 cites W3152787122 @default.
- W4289335841 cites W3189345917 @default.
- W4289335841 cites W3190703111 @default.
- W4289335841 cites W3203059717 @default.
- W4289335841 cites W4206998283 @default.
- W4289335841 cites W4211125726 @default.
- W4289335841 cites W4213353716 @default.
- W4289335841 cites W4213423298 @default.
- W4289335841 cites W4289745132 @default.
- W4289335841 cites W592154304 @default.
- W4289335841 doi "https://doi.org/10.1128/spectrum.01687-22" @default.
- W4289335841 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35913149" @default.
- W4289335841 hasPublicationYear "2022" @default.
- W4289335841 type Work @default.
- W4289335841 citedByCount "3" @default.
- W4289335841 countsByYear W42893358412022 @default.
- W4289335841 countsByYear W42893358412023 @default.
- W4289335841 crossrefType "journal-article" @default.
- W4289335841 hasAuthorship W4289335841A5033962916 @default.
- W4289335841 hasAuthorship W4289335841A5043381222 @default.
- W4289335841 hasAuthorship W4289335841A5085021194 @default.
- W4289335841 hasBestOaLocation W42893358411 @default.
- W4289335841 hasConcept C11701158 @default.
- W4289335841 hasConcept C136622501 @default.
- W4289335841 hasConcept C2776809874 @default.
- W4289335841 hasConcept C2777052132 @default.
- W4289335841 hasConcept C2778651397 @default.
- W4289335841 hasConcept C2778980435 @default.
- W4289335841 hasConcept C2779489039 @default.