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An engineered 5-helix bundle derived from SARS-CoV-2 S2 pre-binds sarbecoviral spike at both serological- and endosomal-pH to inhibit virus entry

Xi Lin, Liyan Guo, Sheng Lin, Zimin Chen, Fanli Yang, Jing Yang, Lingling Wang, Ao Wen, Yanping Duan, Xindan Zhang, Yushan Dai, Keqing Yin, Xin Yuan, Chongzhang Yu, Bin He, Yu Cao, Haohao Dong, Jian Li, Qi Zhao, Guangwen Lu

2022Emerging Microbes & Infections17 citationsDOIOpen Access PDF

Abstract

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) and related sarbecoviruses enter host cells by receptor-recognition and membrane-fusion. An indispensable step in fusion is the formation of 6-helix bundle by viral spike heptad repeats 1 and 2 (HR1 and HR2). Here, we report the construction of 5-helix bundle (5HB) proteins for virus infection inhibition. The optimal construct inhibits SARS-CoV-2 pseudovirus entry with sub-micromolar IC50. Unlike HR2-based peptides that cannot bind spike in the pre-fusion conformation, 5HB features with the capability of binding to pre-fusion spike. Furthermore, 5HB binds viral HR2 at both serological- and endosomal-pH, highlighting its entry-inhibition capacity when SARS-CoV-2 enters via either cell membrane fusion or endosomal route. Finally, we show that 5HB could neutralize S-mediated entry of the predominant SARS-CoV-2 variants and a wide spectrum of sarbecoviruses. These data provide proof-of-concept evidence that 5HB might be developed for the prevention and treatment of SARS-CoV-2 and other emerging sarbecovirus infections.

Topics & Concepts

Viral entryLipid bilayer fusionHeptad repeatEndosomeCoronavirusHelix bundleHelix (gastropod)BiologyVirusViral membraneVirologyCell biologyChemistryBiophysicsReceptorProtein structureBiochemistryPeptide sequenceCoronavirus disease 2019 (COVID-19)Viral envelopeViral replicationMedicineGeneEcologyPathologyInfectious disease (medical specialty)SnailDiseaseSARS-CoV-2 and COVID-19 ResearchAnimal Virus Infections StudiesViral Infections and Immunology Research
An engineered 5-helix bundle derived from SARS-CoV-2 S2 pre-binds sarbecoviral spike at both serological- and endosomal-pH to inhibit virus entry | Litcius