Structural and virological identification of neutralizing antibody footprint provides insights into therapeutic antibody design against SARS-CoV-2 variants.

通过对中和抗体足迹的结构和病毒学鉴定,可以深入了解针对 SARS-CoV-2 变种的治疗性抗体设计

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作者:Anraku Yuki, Kita Shunsuke, Onodera Taishi, Sato Akihiko, Tadokoro Takashi, Ito Shiori, Adachi Yu, Kotaki Ryutaro, Suzuki Tateki, Sasaki Jiei, Shiwa-Sudo Nozomi, Iwata-Yoshikawa Naoko, Nagata Noriyo, Kobayashi Souta, Kazuki Yasuhiro, Oshimura Mitsuo, Nomura Takao, Sasaki Michihito, Orba Yasuko, Suzuki Tadaki, Sawa Hirofumi, Hashiguchi Takao, Fukuhara Hideo, Takahashi Yoshimasa, Maenaka Katsumi
Medical treatments using potent neutralizing SARS-CoV-2 antibodies have achieved remarkable improvements in clinical symptoms, changing the situation for the severity of COVID-19 patients. We previously reported an antibody, NT-108 with potent neutralizing activity. However, the structural and functional basis for the neutralizing activity of NT-108 has not yet been understood. Here, we demonstrated the therapeutic effects of NT-108 in a hamster model and its protective effects at low doses. Furthermore, we determined the cryo-EM structure of NT-108 in complex with SARS-CoV-2 spike. The single-chain Fv construction of NT-108 improved the cryo-EM maps because of the prevention of preferred orientations induced by Fab orientation. The footprints of NT-108 illuminated how escape mutations such as E484K evade from class 2 antibody recognition without ACE2 affinity attenuation. The functional and structural basis for the potent neutralizing activity of NT-108 provides insights into the rational design of therapeutic antibodies.

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