Glycan-shielded homodimer structure and dynamical features of the canine distemper virus hemagglutinin relevant for viral entry and efficient vaccination

Author:

Fukuhara Hideo12,Yumoto Kohei1,Sako Miyuki3,Kajikawa Mizuho3,Ose Toyoyuki1,Kawamura Mihiro1,Yoda Mei1,Chen Surui1,Ito Yuri1,Takeda Shin1,Mwaba Mwila Hilton1ORCID,Wang Jiaqi1,Hashiguchi Takao4,Kamishikiryo Jun3,Maita Nobuo5,Kitatsuji Chihiro1,Takeda Makoto6ORCID,Kuroki Kimiko1,Maenaka Katsumi12789ORCID

Affiliation:

1. Laboratory of Biomolecular Science and Center for Research and Education on Drug Discovery, Faculty of Pharmaceutical Sciences, Hokkaido University

2. Division of Pathogen Structure, Research Center for Zoonosis Control, Hokkaido University

3. Medical Institute of Bioregulation, Kyushu University

4. Department of Virology, Faculty of Medicine, Kyushu University

5. Institute for Enzyme Research, University of Tokushima

6. Department of Microbiology, Graduate School of Medicine and Faculty of Medicine, The University of Tokyo

7. Institute for Vaccine Research and Development (HU-IVReD), Hokkaido University

8. Global Station for Biosurfaces and Drug Discovery, Hokkaido University

9. Core Research for Evolutional Science and Technology, Japan Science and Technology Agency

Abstract

Canine distemper virus (CDV) belongs to morbillivirus, including measles virus (MeV) and rinderpest virus, which causes serious immunological and neurological disorders in carnivores, including dogs and rhesus monkeys, as recently reported, but their vaccines are highly effective. The attachment glycoprotein hemagglutinin (CDV-H) at the CDV surface utilizes signaling lymphocyte activation molecule (SLAM) and Nectin-4 (also called poliovirus-receptor-like-4; PVRL4) as entry receptors. Although fusion models have been proposed, the molecular mechanism of morbillivirus fusion entry is poorly understood. Here, we determined the crystal structure of the globular head domain of CDV-H vaccine strain at 3.2 Å resolution, revealing that CDV-H exhibits a highly tilted homodimeric form with a six-bladed β-propeller fold. While the predicted Nectin-4 binding site is well-conserved with that of MeV-H, that of SLAM is similar but partially different, which is expected to contribute to host specificity. Five N-linked sugars covered a broad area of the CDV-H surface to expose receptor binding sites only, supporting the effective production of neutralizing antibodies. These features are common to MeV-H, although the glycosylation sites are completely different. Furthermore, real-time observation using high-speed atomic force microscopy revealed highly mobile features of the CDV-H dimeric head via the connector region. These results suggest that sugar-shielded tilted-homodimeric structure and dynamic conformational changes are common characteristics of morbilliviruses and ensure effective fusion entry and vaccination.

Publisher

eLife Sciences Publications, Ltd

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