Two T7-like Bacteriophages, K5-2 and K5-4, Each Encodes Two Capsule Depolymerases: Isolation and Functional Characterization

Два T7-подобных бактериофага, K5-2 и K5-4, каждый кодирует по две деполимеразы капсулы: выделение и функциональная характеристика
Jann‐Tay Wang, Tzu‐Lung Lin, Pei‐Fang Hsieh, Hsiao‐Hsuan Lin, Yiyin Chen
2017-06-28

Klebsiella bacteriophagesKlebsiella pneumoniae infectioncapsular polysaccharidescapsule depolymerasestail fiber proteins
Two Klebsiella bacteriophages K5-2 and K5-4, which are able to infect and grow on either capsular types K30/K69 and K5 or K8 and K5 of Klebsiella strains, were isolated and characterized. Each phage contained two open reading frames (ORFs), which encoded two putative capsule depolymerases, respectively. The first ORF encoded tail fiber proteins, which have K30/K69 depolymerase and K8 depolymerase activities. The second ORF encoded hypothetical proteins, which are almost identical in amino acid sequences, and have K5 depolymerase activity. Alcian blue staining of enzyme-treated capsular polysaccharides (CPS) showed that purified depolymerases can cleave purified Klebsiella CPS in vitro and liberate monosaccharaides. Capsule K5 deletion mutants were not lysed by either phage, suggesting that the capsule was essential for phage infection. Bacterial killing was observed when incubated Klebsiella strains with phages but not with purified depolymerases. Treatment with the K5-4 phage significantly increased the survival of mice infected with a K. pneumoniae K5 strain. In conclusion, two dual host-specific Klebsiella phages and their tailspikes exhibit capsule depolymerase activity were characterized. Each phage and phage-encoded depolymerase has specificity for capsular type K30/K69, K8 or K5, and could be used for the typing and treatment of K. pneumoniae infection.
1
Deletion of capsule K5 prevented phage-mediated lysis, demonstrating that the capsule is essential for infection.
2
Each phage encodes two capsule depolymerases: a tail fiber protein targeting K30/K69 or K8, and a second protein targeting K5.
3
K5-4 phage treatment significantly improved survival in mice infected with K. pneumoniae K5, whereas purified depolymerases alone did not kill bacteria.
4
Klebsiella phages K5-2 and K5-4 infect strains bearing multiple capsule types: K30/K69 and K5, or K8 and K5.
5
Purified depolymerases cleave Klebsiella capsular polysaccharides in vitro and release monosaccharides, as shown by Alcian blue staining.

Klebsiella bacteriophages K5-2 and K5-4 and their phage-encoded capsule depolymerases acting on Klebsiella capsular polysaccharides

Host-specific capsule depolymerase activity, capsular-type specificity, phage infection dependence on capsule K5, and antibacterial efficacy of K5-2 and K5-4

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2017-06-28
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Jann‐Tay Wang
Tzu‐Lung Lin
Pei‐Fang Hsieh
Hsiao‐Hsuan Lin
Yiyin Chen
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