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Reoviridae-derived short trimerization domain for stabilizing homo-trimerization of vaccine immunogens and therapeutic proteins

Min Wei, Qingfang Bu, Jin Xiao, Lunzhi Yuan, Jinmiao Shi, Huilin Guo, Yang Huang, Hui Sun, Kai Wang, Zonglin Li, Min Lin, Zhaoming Lu, Chen Zheng, Jijing Chen, Jiahua Gao, Zikang Wang, Zehong Huang, Ruojing Bai, Ying Liu, Jian Ma, Yunda Hong, Youfeng Wang, Jiayi Wu, Yifan Yin, Shengxiang Ge, Zizheng Zheng, Yuehua Chen, Yi Guan, Hai Jing Yu, Tianying Zhang, Jun Zhang, Shaojuan Wang, Qingbing Zheng, Yangtao Wu, Ningshao Xia, Yali Zhang, Quan Yuan

Peer-reviewed journalReal-world use

In the authors' words

Trimerization motifs play pivotal roles in structural biology and therapeutic protein engineering. Here, we describe a short trimerization motif (rFd1303) derived from the Reoviridae family reovirus σ1 protein. Compared with the widely used T4-Foldon, the rFd1303 increased recombinant protein yields. The rFd1303-fused immunogens of SARS-CoV-2 spike and influenza hemagglutinin elicited antibody responses comparable to T4-Foldon-fused controls in mice. Using this tag, we engineered a trimeric ACE2-Ig fusion protein (TriACE2-Ig) that remained stable after 30 days at room temperature and neutralized a broad range of ACE2-utilizing sarbecoviruses, including 19 SARS-CoV-2 variants, SARS-CoV, and pangolin coronaviruses GD and GX, with higher potency than monomeric ACE2-Ig. In the hamster model challenged with various SARS-CoV-2 variants, our data demonstrated that intranasal TriACE2-Ig administration markedly reduced viral loads, virus-induced body-weight loss, lung pathology, and decreased within-cage virus transmission. These findings highlight rFd1303 as a versatile trimerization platform for vaccine and therapeutic protein development. In this study, the authors engineer a short trimerization tag for vaccine and therapeutic protein development. The tag enables a trimeric ACE2 decoy that exhibits broad neutralizing activity against coronaviruses and confers protection in animal models.

Main resultThe abstract does not state a limitation.

Appeared: Saturday, September 26. Nature Communications. Peer-reviewed journal.

DOI: 10.1038/s41467-026-77926-x