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1.
BMC Microbiol ; 11: 226, 2011 Oct 11.
Artigo em Inglês | MEDLINE | ID: mdl-21985151

RESUMO

BACKGROUND: Staphylococcus aureus is a major cause of nosocomial and community-acquired infections. However, the rapid emergence of antibiotic resistance limits the choice of therapeutic options for treating infections caused by this organism. Muralytic enzymes from bacteriophages have recently gained attention for their potential as antibacterial agents against antibiotic-resistant gram-positive organisms. Phage K is a polyvalent virulent phage of the Myoviridae family that is active against many Staphylococcus species. RESULTS: We identified a phage K gene, designated orf56, as encoding the phage tail-associated muralytic enzyme (TAME). The gene product (ORF56) contains a C-terminal domain corresponding to cysteine, histidine-dependent amidohydrolase/peptidase (CHAP), which demonstrated muralytic activity on a staphylococcal cell wall substrate and was lethal to S. aureus cells. We constructed N-terminal truncated forms of ORF56 and arrived at a 16-kDa protein (Lys16) that retained antistaphylococcal activity. We then generated a chimeric gene construct encoding Lys16 and a staphylococcal cell wall-binding SH3b domain. This chimeric protein (P128) showed potent antistaphylococcal activity on global clinical isolates of S. aureus including methicillin-resistant strains. In addition, P128 was effective in decolonizing rat nares of S. aureus USA300 in an experimental model. CONCLUSIONS: We identified a phage K gene that encodes a protein associated with the phage tail structure. The muralytic activity of the phage K TAME was localized to the C-terminal CHAP domain. This potent antistaphylococcal TAME was combined with an efficient Staphylococcus-specific cell-wall targeting domain SH3b, resulting in the chimeric protein P128. This protein shows bactericidal activity against globally prevalent antibiotic resistant clinical isolates of S. aureus and against the genus Staphylococcus in general. In vivo, P128 was efficacious against methicillin-resistant S. aureus in a rat nasal colonization model.


Assuntos
Amidoidrolases/farmacologia , Antibacterianos/farmacologia , Myoviridae/enzimologia , Infecções Estafilocócicas/tratamento farmacológico , Fagos de Staphylococcus/enzimologia , Proteínas da Cauda Viral/farmacologia , Amidoidrolases/genética , Amidoidrolases/metabolismo , Animais , Antibacterianos/metabolismo , Feminino , Humanos , Myoviridae/química , Myoviridae/genética , Ratos , Ratos Wistar , Infecções Estafilocócicas/microbiologia , Staphylococcus/efeitos dos fármacos , Staphylococcus/fisiologia , Fagos de Staphylococcus/química , Fagos de Staphylococcus/genética , Proteínas da Cauda Viral/genética , Proteínas da Cauda Viral/metabolismo
2.
Biosens Bioelectron ; 26(1): 131-8, 2010 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-20541928

RESUMO

We report the use of genetically engineered tailspike proteins (TSPs) from the P22 bacteriophage for the sensitive and selective detection of Salmonella enterica serovar Typhimurium. High yields of two mutant TSPs, one with an N-terminal cysteine (N-Cys) and another with a C-terminal cysteine (C-Cys), have been obtained using recombinant protein expression and purification in Escherichia coli. The mutant TSPs did not have the native endorhamnosidase enzymatic activity of intact P22 phage as well as wild type TSPs (wtTSPs). We have used the Cys-tag to immobilize these TSPs onto gold coated surfaces using thiol-chemistry. Our results demonstrate that the N-Cys configuration of TSPs gives a bacterial capture density of 25.87 ± 0.61 bacteria/100 µm(2) while the C-Cys configuration shows a density of 8.57 ± 0.19 bacteria/100 µm(2). This confirms that the appropriate orientation of the TSPs on the surface is important for efficient capture of the host bacteria. The bacterial capture density of the mutant N-Cys TSP was also 6-fold better than that obtained for intact P22 phage as well as wtTSPs. Bovine-serum albumin was used as a protective layer to prevent any non-specific binding of the bacteria onto the gold substrate. The recognition specificity was confirmed using 3 strains of E. coli which showed negligible binding. In addition, the host bacteria did not show any binding in the absence of the TSPs on the surface. We further show a selective real-time analytical detection of Salmonella by N-Cys mTSP-immobilized on gold coated SF-10 glass plates using surface plasmon resonance. The sensitivity of detection was found to be 10(3)cfu/ml of bacteria.


Assuntos
Carga Bacteriana/instrumentação , Técnicas Biossensoriais/instrumentação , Técnicas de Sonda Molecular/instrumentação , Salmonella enterica/isolamento & purificação , Ressonância de Plasmônio de Superfície/instrumentação , Proteínas da Cauda Viral/química , Desenho de Equipamento , Análise de Falha de Equipamento , Glicosídeo Hidrolases , Salmonella enterica/metabolismo , Sensibilidade e Especificidade , Proteínas da Cauda Viral/farmacologia
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