TY - JOUR
T1 - Adsorption of Staphylococcus viruses S13' and S24-1 on staphylococcus aureus strains with different glycosidic linkage patterns of wall teichoic acids
AU - Uchiyama, Jumpei
AU - Taniguchi, Maya
AU - Kurokawa, Kenji
AU - Takemura-Uchiyama, Iyo
AU - Ujihara, Takako
AU - Shimakura, Hidekatsu
AU - Sakaguchi, Yoshihiko
AU - Murakami, Hironobu
AU - Sakaguchi, Masahiro
AU - Matsuzaki, Shigenobu
N1 - Funding Information:
This study was supported by a Grant-in-Aid for Research Activity Start-up (22890129), and Grants-in-Aid for Young Scientists (24791025 and 15K19095) from the Japan Society for the Promotion of Science.
Publisher Copyright:
© 2017 The Authors.
PY - 2017/8
Y1 - 2017/8
N2 - The group of phages belonging to the family Podoviridae, genus P68virus, including Staphylococcus viruses S13' and S24-1, are important because of their benefits in phage therapy against Staphylococcus aureus infections. The O-glycosidic linkage patterns of wall teichoic acids (WTAs) in S. aureus cell walls seem to be important for adsorption of this phage group. In this study, the adsorption of Staphylococcus viruses S13' and S24-1 to S. aureus was examined using strains with modified WTA glycosidic linkage patterns. We found that the β-O-N-acetylglucosamine of WTAs was essential for S13' adsorption, while Nacetylglucosamine, regardless of the α- and β-O-glycosidic linkages of the WTAs, was essential for S24-1 adsorption. Next, examining the binding activities of their receptor-binding proteins (RBPs) to cell walls with different WTA glycosidic patterns, the β-O-N-acetylglucosamine of the WTAs was essential for S13' RBP binding, while N-acetylglucosamine, regardless of the a- and β-O-glycosidic linkages of the WTAs, was essential for S24-1 RBP binding. Therefore, the results of the RBP binding assays were consistent with those of the phage adsorption assays. Bioinformatic analysis suggested that the RBPs of Staphylococcus viruses S13' and S24-1 were structurally similar to the RBPs of phage phi11 of thefamily Siphoviridae. Phylogenetic analysis of the RBPs indicated that two phylogenetic subclusters in the family Podoviridae were related to the glycosidic linkage patterns required for phage adsorption, possibly mediated by RBPs. We hope that this study will encourage the future development of therapeutic phages.
AB - The group of phages belonging to the family Podoviridae, genus P68virus, including Staphylococcus viruses S13' and S24-1, are important because of their benefits in phage therapy against Staphylococcus aureus infections. The O-glycosidic linkage patterns of wall teichoic acids (WTAs) in S. aureus cell walls seem to be important for adsorption of this phage group. In this study, the adsorption of Staphylococcus viruses S13' and S24-1 to S. aureus was examined using strains with modified WTA glycosidic linkage patterns. We found that the β-O-N-acetylglucosamine of WTAs was essential for S13' adsorption, while Nacetylglucosamine, regardless of the α- and β-O-glycosidic linkages of the WTAs, was essential for S24-1 adsorption. Next, examining the binding activities of their receptor-binding proteins (RBPs) to cell walls with different WTA glycosidic patterns, the β-O-N-acetylglucosamine of the WTAs was essential for S13' RBP binding, while N-acetylglucosamine, regardless of the a- and β-O-glycosidic linkages of the WTAs, was essential for S24-1 RBP binding. Therefore, the results of the RBP binding assays were consistent with those of the phage adsorption assays. Bioinformatic analysis suggested that the RBPs of Staphylococcus viruses S13' and S24-1 were structurally similar to the RBPs of phage phi11 of thefamily Siphoviridae. Phylogenetic analysis of the RBPs indicated that two phylogenetic subclusters in the family Podoviridae were related to the glycosidic linkage patterns required for phage adsorption, possibly mediated by RBPs. We hope that this study will encourage the future development of therapeutic phages.
KW - Adsorption
KW - N-acetylglucosamine
KW - Podophage
KW - Receptor-binding protein
KW - Wall teichoic acids
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U2 - 10.1099/jgv.0.000865
DO - 10.1099/jgv.0.000865
M3 - Article
C2 - 28730979
AN - SCOPUS:85028288188
SN - 0022-1317
VL - 98
SP - 2171
EP - 2180
JO - Journal of General Virology
JF - Journal of General Virology
IS - 8
M1 - 000865
ER -