Macrocyclic peptides exhibit antiviral effects against influenza virus HA and prevent pneumonia in animal models

Author:

Saito Makoto,Itoh Yasushi,Yasui Fumihiko,Munakata Tsubasa,Yamane DaisukeORCID,Ozawa MakotoORCID,Ito Risa,Katoh TakayukiORCID,Ishigaki HirohitoORCID,Nakayama Misako,Shichinohe Shintaro,Yamaji Kenzaburo,Yamamoto Naoki,Ikejiri Ai,Honda Tomoko,Sanada Takahiro,Sakoda YoshihiroORCID,Kida Hiroshi,Le Thi Quynh Mai,Kawaoka YoshihiroORCID,Ogasawara Kazumasa,Tsukiyama-Kohara Kyoko,Suga HiroakiORCID,Kohara MichinoriORCID

Abstract

AbstractMost anti-influenza drugs currently used, such as oseltamivir and zanamivir, inhibit the enzymatic activity of neuraminidase. However, neuraminidase inhibitor-resistant viruses have already been identified from various influenza virus isolates. Here, we report the development of a class of macrocyclic peptides that bind the influenza viral envelope protein hemagglutinin, named iHA. Of 28 iHAs examined, iHA-24 and iHA-100 have inhibitory effects on the in vitro replication of a wide range of Group 1 influenza viruses. In particular, iHA-100 bifunctionally inhibits hemagglutinin-mediated adsorption and membrane fusion through binding to the stalk domain of hemagglutinin. Moreover, iHA-100 shows powerful efficacy in inhibiting the growth of highly pathogenic influenza viruses and preventing severe pneumonia at later stages of infection in mouse and non-human primate cynomolgus macaque models. This study shows the potential for developing cyclic peptides that can be produced more efficiently than antibodies and have multiple functions as next-generation, mid-sized biomolecules.

Funder

Japan Agency for Medical Research and Development

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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