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三聚七肽重复合成肽 HR1 和 HR2 能有效抑制 HIV-1 进入。

Trimeric heptad repeat synthetic peptides HR1 and HR2 efficiently inhibit HIV-1 entry.

机构信息

INSERM, U1043, CPTP, CHU purpan, Toulouse, France.

CNRS, U5282 CPTP, CHU purpan, Toulouse, France.

出版信息

Biosci Rep. 2019 Sep 24;39(9). doi: 10.1042/BSR20192196. Print 2019 Sep 30.

Abstract

The trimeric heptad repeat domains HR1 and HR2 of the human immunodeficiency virus 1 (HIV-1) gp41 play a key role in HIV-1-entry by membrane fusion. To develop efficient inhibitors against this step, the corresponding trimeric-N36 and C34 peptides were designed and synthesized. Analysis by circular dichroism of monomeric and trimeric N36 and C34 peptides showed their capacities to adopt α-helical structures and to establish physical interactions. At the virological level, while trimeric-C34 conserves the same high anti-fusion activity as monomeric-C34, trimerization of N36-peptide induced a significant increase, reaching 500-times higher in anti-fusion activity, against R5-tropic virus-mediated fusion. This result was associated with increased stability of the N36 trimer peptide with respect to the monomeric form, as demonstrated by the comparative kinetics of their antiviral activities during 6-day incubation in a physiological medium. Collectively, our findings demonstrate that while the trimerization of C34 peptide had no beneficial effect on its stability and antiviral activity, the trimerization of N36 peptide strengthened both stability and antiviral activity. This approach, promotes trimers as new promising HIV-1 inhibitors and point to future development aimed toward innovative peptide fusion inhibitors, microbicides or as immunogens.

摘要

HIV-1 包膜糖蛋白 gp41 的三聚体七肽重复结构域 HR1 和 HR2 在 HIV-1 进入过程中通过膜融合发挥关键作用。为了开发针对这一步骤的有效抑制剂,设计并合成了相应的三聚体 N36 和 C34 肽。单体和三聚体 N36 和 C34 肽的圆二色谱分析表明它们具有形成 α-螺旋结构并建立物理相互作用的能力。在病毒学水平上,尽管三聚体 C34 保留了与单体 C34 相同的高抗融合活性,但 N36-肽的三聚化诱导了显著增加,对 R5 嗜性病毒介导的融合的抗融合活性增加了 500 倍。这一结果与 N36 三聚体肽相对于单体形式的稳定性增加有关,这是通过在生理介质中孵育 6 天期间比较它们的抗病毒活性的动力学来证明的。总之,我们的研究结果表明,尽管 C34 肽的三聚化对其稳定性和抗病毒活性没有有益影响,但 N36 肽的三聚化增强了稳定性和抗病毒活性。这种方法促进了三聚体作为新型有前途的 HIV-1 抑制剂,并为未来旨在开发创新的肽融合抑制剂、杀微生物剂或作为免疫原的发展指明了方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f33f/6757187/e4f6b4541efb/bsr-39-bsr20192196-g1.jpg

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