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1.
J Antimicrob Chemother ; 70(3): 649-52, 2015 Mar.
Article in English | MEDLINE | ID: mdl-25411186

ABSTRACT

OBJECTIVES: To describe a family of conjugative plasmids isolated from colonizing community Staphylococcus aureus and determine their ability to mobilize unrelated antimicrobial resistance/virulence plasmids, not encoding mobilization functions. METHODS: Plasmid pWBG749 was labelled with Tn551 (pWBG749e) to enable laboratory manipulation. Plasmid pWBG749e was conjugated into S. aureus of seven different lineages that harboured unrelated plasmids and mobilization experiments were performed. Plasmids were screened by EcoRI restriction and hybridization with probes prepared from unique pWBG749 conjugation genes. RESULTS: Conjugative plasmids pWBG745, pWBG748 and pWBG749 belong to the same conjugative-plasmid family as the vancomycin resistance plasmid pBRZ01. Plasmid pWBG749e mobilized five unrelated plasmids. Mobilized plasmid pWBG744 is a pIB485-family plasmid that was also found in international S. aureus. CONCLUSIONS: Plasmid pWBG749e can mobilize unrelated S. aureus plasmids whose means of dissemination have not previously been understood.


Subject(s)
Conjugation, Genetic , Gene Transfer, Horizontal , Plasmids , Staphylococcus aureus/genetics , Community-Acquired Infections/microbiology , DNA, Bacterial/chemistry , DNA, Bacterial/genetics , Gene Order , Genes, Bacterial , Humans , Molecular Sequence Data , Sequence Analysis, DNA , Staphylococcal Infections/microbiology , Staphylococcus aureus/isolation & purification
2.
Microbiology (Reading) ; 160(Pt 7): 1427-1439, 2014 Jul.
Article in English | MEDLINE | ID: mdl-24760967

ABSTRACT

Bis-(3'-5')-cyclic dimeric guanosine monophosphate (c-di-GMP) is a ubiquitous bacterial signalling molecule produced by diguanylate cyclases of the GGDEF-domain family. Elevated c-di-GMP levels or increased GGDEF protein expression is frequently associated with the onset of sessility and biofilm formation in numerous bacterial species. Conversely, phosphodiesterase-dependent diminution of c-di-GMP levels by EAL- and HD-GYP-domain proteins is often accompanied by increased motility and virulence. In this study, we individually overexpressed 23 predicted GGDEF, EAL or HD-GYP-domain proteins encoded by the phytopathogen Pectobacterium atrosepticum strain SCRI1043. MS-based detection of c-di-GMP and 5'-phosphoguanylyl-(3'-5')-guanosine in these strains revealed that overexpression of most genes promoted modest 1-10-fold changes in cellular levels of c-di-GMP, with the exception of the GGDEF-domain proteins ECA0659 and ECA3374, which induced 1290- and 7660-fold increases, respectively. Overexpression of most EAL domain proteins increased motility, while overexpression of most GGDEF domain proteins reduced motility and increased poly-ß-1,6-N-acetyl-glucosamine-dependent flocculation. In contrast to domain-based predictions, overexpression of the EAL protein ECA3549 or the HD-GYP protein ECA3548 increased c-di-GMP concentrations and reduced motility. Most overexpression constructs altered the levels of secreted cellulases, pectinases and proteases, confirming c-di-GMP regulation of virulence in Pe. atrosepticum. However, there was no apparent correlation between virulence-factor induction and the domain class expressed or cellular c-di-GMP levels, suggesting that regulation was in response to specific effectors within the network, rather than total c-di-GMP concentration. Finally, we demonstrated that the cellular localization patterns vary considerably for GGDEF/EAL/HD-GYP proteins, indicating it is a likely factor restricting specific interactions within the c-di-GMP network.


Subject(s)
Bacterial Proteins/genetics , Cyclic GMP/analogs & derivatives , Gene Expression Regulation, Bacterial , Pectobacterium/genetics , Pectobacterium/physiology , Plant Diseases/microbiology , Signal Transduction , Solanum tuberosum/microbiology , Bacterial Proteins/metabolism , Computational Biology , Cyclic GMP/analysis , Cyclic GMP/metabolism , Gene Expression , Pectobacterium/pathogenicity , Phenotype , Plant Tubers/microbiology , Recombinant Fusion Proteins , Virulence
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