七肽重复区
化学
肽
螺旋线圈
拟肽
脂质双层融合
螺旋(腹足类)
生物物理学
拉链
中东呼吸综合征冠状病毒
病毒进入
肽序列
生物化学
细胞生物学
2019年冠状病毒病(COVID-19)
病毒学
膜
病毒
生物
算法
病毒复制
蜗牛
生态学
病理
计算机科学
医学
疾病
传染病(医学专业)
基因
作者
J. Li,Qing Li,Shuai Xia,Jiahuang Tu,Longbo Zheng,Qian Wang,Shibo Jiang,Chao Wang
标识
DOI:10.1016/j.bmcl.2023.129569
摘要
Interaction between Middle East respiratory syndrome coronavirus (MERS-CoV) spike (S) protein heptad repeat-1 domain (HR1) and heptad repeat-2 domain (HR2) is critical for the MERS-CoV fusion process. This interaction is mediated by the α-helical region from HR2 and the hydrophobic groove in a central HR1 trimeric coiled coil. We sought to develop a short peptidomimetic to act as a MERS-CoV fusion inhibitor by reproducing the key recognition features of HR2 helix. This was achieved by the use of helix-stabilizing strategies, including substitution with unnatural helix-favoring amino acids, introduction of ion pair interactions, and conjugation of palmitic acid. The resulting 23-mer lipopeptide, termed AEEA-C16, inhibits MERS-CoV S protein-mediated cell–cell fusion at a low micromolar level comparable to that of the 36-mer HR2 peptide HR2P-M2. Collectively, our studies provide new insights into developing short peptide-based antiviral agents to treat MERS-CoV infection.
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