Bacteriophage-encoded virion-associated enzymes to overcome the carbohydrate barriers during the infection process

Ферменты, ассоциированные с вирионами и кодируемые бактериофагами, для преодоления углеводных барьеров в процессе инфекции
Barbara Maciejewska, Zuzanna Drulis‐Kawa, Agnieszka Łątka, Yves Briers, Grażyna Majkowska-Skrobek
2017-03-23

antibacterial applicationsbacteriophage virion-associated enzymescarbohydrate barrierspolysaccharide depolymerasesvirion-associated lysins
Bacteriophages are bacterial viruses that infect the host after successful receptor recognition and adsorption to the cell surface. The irreversible adherence followed by genome material ejection into host cell cytoplasm must be preceded by the passage of diverse carbohydrate barriers such as capsule polysaccharides (CPSs), O-polysaccharide chains of lipopolysaccharide (LPS) molecules, extracellular polysaccharides (EPSs) forming biofilm matrix, and peptidoglycan (PG) layers. For that purpose, bacteriophages are equipped with various virion-associated carbohydrate active enzymes, termed polysaccharide depolymerases and lysins, that recognize, bind, and degrade the polysaccharide compounds. We discuss the existing diversity in structural locations, variable architectures, enzymatic specificities, and evolutionary aspects of polysaccharide depolymerases and virion-associated lysins (VALs) and illustrate how these aspects can correlate with the host spectrum. In addition, we present methods that can be used for activity determination and the application potential of these enzymes as antibacterials, antivirulence agents, and diagnostic tools.
1
Activity-determination methods support characterization of these enzymes and evaluation of their functional properties.
2
Bacteriophages use virion-associated carbohydrate-active enzymes to overcome capsule, LPS, biofilm EPS, and peptidoglycan barriers during infection.
3
Phage-encoded depolymerases and lysins have potential applications as antibacterial agents, antivirulence therapeutics, and diagnostic tools.
4
Polysaccharide depolymerases and virion-associated lysins recognize, bind, and enzymatically degrade host carbohydrate structures, enabling genome ejection.
5
These enzymes exhibit diverse structural locations, architectures, substrate specificities, and evolutionary patterns that can correlate with bacteriophage host range.

Bacteriophage-encoded virion-associated carbohydrate-active enzymes, including polysaccharide depolymerases and virion-associated lysins, that act on bacterial carbohydrate barriers

The structural diversity, enzymatic specificities, evolutionary features, host-spectrum relationships, activity determination, and antibacterial, antivirulence, and diagnostic potential of these enzymes

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2017-03-23
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Barbara Maciejewska
Zuzanna Drulis‐Kawa
Agnieszka Łątka
Yves Briers
Grażyna Majkowska-Skrobek
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