The O-specific polysaccharide lyase from the phage LKA1 tailspike reduces Pseudomonas virulence
О-специфичная полисахаридлиаза из шипового белка фага LKA1 снижает вирулентность Pseudomonas
2017-11-20
SCID: 54.1/js3xthxm
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B-band lipopolysaccharideGalleria mellonella infection modelO-specific polysaccharide lyasePseudomonas aeruginosa PAO1Pseudomonas phage LKA1
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Abstract (AI)
Pseudomonas phage LKA1 of the subfamily Autographivirinae encodes a tailspike protein (LKA1gp49) which binds and cleaves B-band LPS (O-specific antigen, OSA) of Pseudomonas aeruginosa PAO1. The crystal structure of LKA1gp49 catalytic domain consists of a beta-helix, an insertion domain and a C-terminal discoidin-like domain. The putative substrate binding and processing site is located on the face of the beta-helix whereas the C-terminal domain is likely involved in carbohydrates binding. NMR spectroscopy and mass spectrometry analyses of degraded LPS (OSA) fragments show an O5 serotype-specific polysaccharide lyase specificity. LKA1gp49 reduces virulence in an in vivo Galleria mellonella infection model and sensitizes P. aeruginosa to serum complement activity. This enzyme causes biofilm degradation and does not affect the activity of ciprofloxacin and gentamicin. This is the first comprehensive report on LPS-degrading lyase derived from a Pseudomonas phage. Biological properties reveal a potential towards its applications in antimicrobial design and as a microbiological or biotechnological tool.
Key Findings
1
LKA1gp49 does not impair ciprofloxacin or gentamicin activity, supporting potential antimicrobial and biotechnological applications.
2
LKA1gp49 reduces Pseudomonas virulence in Galleria mellonella, sensitizes bacteria to serum complement, and degrades biofilms.
3
NMR and mass spectrometry demonstrate that LKA1gp49 is specific for O5-serotype polysaccharide and functions as a polysaccharide lyase.
4
The LKA1 phage tailspike protein LKA1gp49 binds and cleaves the B-band lipopolysaccharide O-specific antigen of Pseudomonas aeruginosa PAO1.
5
The LKA1gp49 catalytic domain adopts a beta-helix, insertion domain, and C-terminal discoidin-like domain, with distinct regions implicated in substrate processing and carbohydrate binding.
Research Object
LKA1gp49 O-specific polysaccharide lyase (tailspike protein) from Pseudomonas phage LKA1 acting on B-band lipopolysaccharide/O-specific antigen of Pseudomonas aeruginosa PAO1
Research Subject
O5 serotype-specific OSA degradation and the enzyme’s effects on Pseudomonas aeruginosa virulence, biofilms, serum complement sensitivity, and antibiotic activity
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2017-11-20
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