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Bacillaceae serine proteases and Streptomyces epsilon-poly-L-lysine synergistically inactivate Caliciviridae by inhibiting RNA genome release.
Yamamoto, Soh; Ogasawara, Noriko; Sudo-Yokoyama, Yuka; Sato, Sachiko; Takata, Nozomu; Yokota, Nana; Nakano, Tomomi; Hayashi, Kyoko; Takasawa, Akira; Endo, Mayumi; Hinatsu, Masako; Yoshida, Keitaro; Sato, Toyotaka; Takahashi, Satoshi; Takano, Kenichi; Kojima, Takashi; Hiraki, Jun; Yokota, Shin-Ich.
Afiliación
  • Yamamoto S; Department of Microbiology, Sapporo Medical University School of Medicine, Sapporo, 060-8556, Japan.
  • Ogasawara N; Department of Microbiology, Sapporo Medical University School of Medicine, Sapporo, 060-8556, Japan. ogasawara.n@sapmed.ac.jp.
  • Sudo-Yokoyama Y; Department of Otolaryngology-Head and Neck Surgery, Sapporo Medical University School of Medicine, Sapporo, 060-8556, Japan. ogasawara.n@sapmed.ac.jp.
  • Sato S; Department of Microbiology, Sapporo Medical University School of Medicine, Sapporo, 060-8556, Japan.
  • Takata N; Department of Microbiology, Sapporo Medical University School of Medicine, Sapporo, 060-8556, Japan.
  • Yokota N; Center for Vascular and Developmental Biology, Feinberg Cardiovascular and Renal Research Institute, Feinberg School of Medicine, Northwestern University, Chicago, IL, 60611, USA.
  • Nakano T; Yokohama R&D Center, JNC Corporation, Yokohama, 236-8605, Japan.
  • Hayashi K; Yokohama R&D Center, JNC Corporation, Yokohama, 236-8605, Japan.
  • Takasawa A; College of Life and Health Sciences, Chubu University, Kasugai, 487-8501, Japan.
  • Endo M; Department of Pathology, Asahikawa Medical University, Asahikawa, 078-8510, Japan.
  • Hinatsu M; Department of Microbiology, Sapporo Medical University School of Medicine, Sapporo, 060-8556, Japan.
  • Yoshida K; Yokohama R&D Center, JNC Corporation, Yokohama, 236-8605, Japan.
  • Sato T; Department of Microbiology, Sapporo Medical University School of Medicine, Sapporo, 060-8556, Japan.
  • Takahashi S; Laboratory of Veterinary Hygiene, Faculty of Veterinary Medicine, Hokkaido University, Sapporo, 060-0818, Japan.
  • Takano K; Graduate School of Infectious Diseases, Hokkaido University, Sapporo, 060-0818, Japan.
  • Kojima T; One Health Research Center, Hokkaido University, Sapporo, 060-0818, Japan.
  • Hiraki J; Department of Infection Control and Laboratory Medicine, Sapporo Medical University School of Medicine, Sapporo, 060-8556, Japan.
  • Yokota SI; Department of Otolaryngology-Head and Neck Surgery, Sapporo Medical University School of Medicine, Sapporo, 060-8556, Japan.
Sci Rep ; 14(1): 15181, 2024 07 02.
Article en En | MEDLINE | ID: mdl-38956295
ABSTRACT
Human norovirus (HuNoV) is an enteric infectious pathogen belonging to the Caliciviridae family that causes occasional epidemics. Circulating alcohol-tolerant viral particles that are readily transmitted via food-borne routes significantly contribute to the global burden of HuNoV-induced gastroenteritis. Moreover, contact with enzymes secreted by other microorganisms in the environment can impact the infectivity of viruses. Hence, understanding the circulation dynamics of Caliciviridae is critical to mitigating epidemics. Accordingly, in this study, we screened whether environmentally abundant secretase components, particularly proteases, affect Caliciviridae infectivity. Results showed that combining Bacillaceae serine proteases with epsilon-poly-L-lysine (EPL) produced by Streptomyces-a natural antimicrobial-elicited anti-Caliciviridae properties, including against the epidemic HuNoV GII.4_Sydney_2012 strain. In vitro and in vivo biochemical and virological analyses revealed that EPL has two unique synergistic viral inactivation functions. First, it maintains an optimal pH to promote viral surface conformational changes to the protease-sensitive structure. Subsequently, it inhibits viral RNA genome release via partial protease digestion at the P2 and S domains in the VP1 capsid. This study provides new insights regarding the high-dimensional environmental interactions between bacteria and Caliciviridae, while promoting the development of protease-based anti-viral disinfectants.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Polilisina / Streptomyces / Bacillaceae / Serina Proteasas Límite: Animals / Humans Idioma: En Revista: Sci Rep / Sci. rep. (Nat. Publ. Group) / Scientific reports (Nature Publishing Group) Año: 2024 Tipo del documento: Article País de afiliación: Japón

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Polilisina / Streptomyces / Bacillaceae / Serina Proteasas Límite: Animals / Humans Idioma: En Revista: Sci Rep / Sci. rep. (Nat. Publ. Group) / Scientific reports (Nature Publishing Group) Año: 2024 Tipo del documento: Article País de afiliación: Japón