State Key Laboratory of Toxicology and Medical Countermeasures, Beijing Institute of Pharmacology &Toxicology, 27 Tai-Ping Road, Beijing, 100850, China.
Key Laboratory of Medical Molecular Virology of Ministries of Education and Health, School of Basic Medical Sciences, Fudan University, Shanghai 200032, China.
Sci Rep. 2016 Aug 26;6:32161. doi: 10.1038/srep32161.
Peptides derived from the N-terminal heptad repeat (NHR) of HIV-1 gp41 can be potent inhibitors against viral entry when presented in a nonaggregating trimeric coiled-coil conformation via the introduction of exogenous trimerization motifs and intermolecular disulfide bonds. We recently discovered that crosslinking isopeptide bridges within the de novo helical trimers added exceptional resistance to unfolding. Herein, we attempted to optimize (CCIZN17)3, a representative disulfide bond-stabilized chimeric NHR-trimer, by incorporating site-specific interhelical isopeptide bonds as the redox-sensitive disulfide surrogate. In this process, we systematically examined the effect of isopeptide bond position and molecular sizes of auxiliary trimeric coiled-coil motif and NHR fragments on the antiviral potency of these NHR-trimers. Pleasingly, (IZ14N24N)3 possessed promising inhibitory activity against HIV-1 infection and markedly increased proteolytic stability relative to its disulfide-tethered counterpart, suggesting good potential for further development as an effective antiviral agent for treatment of HIV-1 infection.
来自 HIV-1 gp41 N 端七肽重复序列(NHR)的肽段,在引入外源性三聚化基序和分子间二硫键后,以非聚集三聚体卷曲螺旋构象呈现时,可成为有效的病毒进入抑制剂。我们最近发现,从头形成的螺旋三聚体中的交联异肽桥增加了对解折叠的特殊抗性。在此,我们试图通过引入特异性的螺旋间异肽键作为氧化还原敏感的二硫键替代物,对代表性的二硫键稳定的嵌合 NHR-三聚体 (CCIZN17)3 进行优化。在这个过程中,我们系统地研究了异肽键位置和辅助三聚体卷曲螺旋基序和 NHR 片段的分子大小对这些 NHR-三聚体抗病毒活性的影响。令人高兴的是,(IZ14N24N)3 对 HIV-1 感染具有有前景的抑制活性,并且相对于其二硫键连接的对应物显著增加了蛋白水解稳定性,表明其具有进一步开发为有效抗 HIV-1 感染治疗剂的良好潜力。