๐ Discovery of Hydrocarbon-Stapled Short ฮฑ-Helical Peptides as Promising Middle East Respiratory Syndrome Coronavirus (MERS-CoV) Fusion Inhibitors
ยฉ 2018 American Chemical Society. The hexameric ฮฑ-helical coiled-coil formed between the C-terminal and N-terminal heptad repeat (CHR and NHR) regions of class I viral fusion proteins plays an important role in mediating the fusion of the viral and cellular membranes and provides a clear starting point for molecular mimicry that drives viral fusion inhibitor design. Unfortunately, such peptide mimicry of the short ฮฑ-helical region in the CHR of Middle East respiratory syndrome coronavirus (MERS-CoV) spike protein has been thwarted by the loss of the peptide's native ฮฑ-helical conformation when taken out of the parent protein structure. Here, we describe that appropriate all-hydrocarbon stapling of the short helical portion-based peptide to reinforce its bioactive secondary structure remarkably improves antiviral potency. The resultant stapled peptide P21S10 could effectively inhibit infection by MERS-CoV pseudovirus and its spike protein-mediated cell-cell fusion; additionally, P21S10 exhibits improved pharmacokinetic properties than HR2P-M2, suggesting strong potential for development as an anti-MERS-CoV therapeutic.
keywords
๐ syndrome coronavirus (1074)
๐ cell-cell fusion (34)
๐ spike protein (353)
๐ important role (140)
๐ fusion proteins (43)
๐ heptad repeat (55)
๐ respiratory syndrome (2004)
๐ viral fusion (38)
author
๐ค Wang, Chao
๐ค Xia, Shuai
๐ค Zhang, Peiyu
๐ค Zhang, Tianhong
๐ค Wang, Weicong
๐ค Tian, Yangli
๐ค Meng, Guangpeng
๐ค Jiang, Shibo
๐ค Liu, Keliang
year
โฐ 2018
issn
๐ 15204804 00222623
volume
61
number
5
page
2018-2026
citedbycount
9
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