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Creating an artificial tail anchor as a novel strategy to enhance the potency of peptide-based HIV fusion inhibitors

  • Shan Su
  • , Yun Zhu
  • , Sheng Ye
  • , Qianqian Qi
  • , Shuai Xia
  • , Zhenxuan Ma
  • , Fei Yu
  • , Qian Wang
  • , Rongguang Zhang
  • , Shibo Jiang*
  • , Lu Lu
  • *此作品的通讯作者
  • Fudan University
  • CAS - Institute of Biophysics
  • CAS - Center for Excellence in Molecular Cell Science
  • New York Blood Center

科研成果: 期刊稿件文章同行评审

摘要

20 (enfuvirtide) and other peptides derived from the human immunodeficiency virus type 1 (HIV-1) gp41 C-terminal heptad repeat (CHR) region inhibit HIV fusion by binding to the hydrophobic grooves on the N-terminal heptad repeat (NHR) trimer and blocking six-helix-bundle (6-HB) formation. Several strategies focusing on the binding grooves of the NHR trimer have been adopted to increase the antiviral activity of the CHR peptides. Here, we developed a novel and simple strategy to greatly enhance the potency of the existing peptide-based HIV fusion inhibitors. First, we identified a shallow pocket adjacent to the groove in the N-terminal region of NHR trimer as a new drug target, and then we designed several short artificial peptides to fit this target. After the addition of IDL (Ile-Asp-Leu) to the C terminus of CHR peptide WQ or MT-WQ, the conjugated peptides, WQ-IDL and MT-WQIDL, showed much more potent activities than WQ and T20, respectively, in inhibiting HIV-1 IIIB infection. WQ-IDL and MT-WQ-IDL were also more effective than WQ in blocking HIV-1 Env-mediated membrane fusion and had higher levels of binding affinity with NHR peptide N46. We solved the crystal structure of the 6-HB formed by MT-WQ-IDL and N46 and found that, besides the N-terminal MT hook tail, the IDL tail anchor of MT-WQ-IDL also binds with the shallow hydrophobic pocket outside the groove of the NHR trimer, resulting in enhanced inhibition of HIV-1 fusion with the target cell. It is expected that this novel approach can be widely used to improve the potency of peptidic fusion inhibitors against other enveloped viruses with class I fusion proteins.

源语言英语
文章编号e01445-16
期刊Journal of Virology
91
1
DOI
出版状态已出版 - 2017
已对外发布

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    可持续发展目标 3 良好健康与福祉

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