College of Pharmacy, Dongguk University, Goyang, Republic of Korea.
Department of Pharmacy, College of Pharmacy and Institute of Pharmaceutical Sciences, CHA University, Republic of Korea.
Virology. 2021 Sep;561:6-16. doi: 10.1016/j.virol.2021.05.004. Epub 2021 May 24.
Based on the previously reported 13-residue antibacterial peptide analog, brevinin-1EMa (FLGWLFKVASKVL, peptide B), we attempted to design a novel class of antiviral peptides. For this goal, we synthesized three peptides with different stapling positions (B-2S, B-8S, and B-5S). The most active antiviral peptide with the specific stapling position (B-5S) was further modified in combination with either cysteine (B-5S3C, B-5S7C, and B-5S10C) or hydrophilic amino acid substitution (Bsub and Bsub-5S). Overall, B, B-5S, and Bsub-5S peptides showed superior antiviral activities against enveloped viruses such as retrovirus, lentivirus, hepatitis C virus, and herpes simplex virus with EC values of 1-5 μM. Murine norovirus, a non-enveloped virus, was not susceptible to the virucidal actions of these peptides, suggesting the virus membrane disruption as their main antiviral mechanisms of action. We believe that these three novel peptides could serve as promising candidates for further development of membrane-targeting antiviral drugs in the future.
基于先前报道的 13 残基抗菌肽类似物,brevinin-1EMa(FLGWLFKVASKVL,肽 B),我们试图设计一类新型抗病毒肽。为此,我们合成了三个具有不同订书位置的肽(B-2S、B-8S 和 B-5S)。具有特定订书位置(B-5S)的最有效抗病毒肽进一步与半胱氨酸(B-5S3C、B-5S7C 和 B-5S10C)或亲水氨基酸取代(Bsub 和 Bsub-5S)结合进行修饰。总的来说,肽 B、B-5S 和 Bsub-5S 对包膜病毒(如逆转录病毒、慢病毒、丙型肝炎病毒和单纯疱疹病毒)具有优越的抗病毒活性,EC 值为 1-5 μM。非包膜病毒鼠诺如病毒不易受这些肽的病毒杀伤作用影响,表明病毒膜破坏是其主要的抗病毒作用机制。我们相信这三个新型肽可以作为未来靶向膜的抗病毒药物进一步开发的有前途的候选物。