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HIV-1 糖蛋白 41 与肽和小分子相互作用的生物物理研究-脂质和去污剂的影响。

Biophysical studies of HIV-1 glycoprotein-41 interactions with peptides and small molecules - Effect of lipids and detergents.

机构信息

Department of Basic Sciences, College of Osteopathic Medicine, Touro University California, Vallejo, CA 94592, United States of America.

Department of Bioengineering and Therapeutic Sciences, UCSF School of Pharmacy, San Francisco, CA 94143, United States of America.

出版信息

Biochim Biophys Acta Gen Subj. 2020 Dec;1864(12):129724. doi: 10.1016/j.bbagen.2020.129724. Epub 2020 Sep 2.

Abstract

BACKGROUND

The hydrophobic pocket (HP) of HIV-1 glycoprotein-41 ectodomain is defined by two chains of the N-heptad repeat trimer, within the protein-protein interface that mediates 6HB formation. It is a potential target for inhibitors of viral fusion, but its hydrophobic nature and proximity to membrane in situ has precluded ready analysis of inhibitor interactions.

METHODS

We evaluated the sensitivity of F NMR and fluorescence for detecting peptide and small molecule binding to the HP and explored the effect of non-denaturing detergent or phospholipid as cosolvents and potential mimics of the membrane environment surrounding gp41.

RESULTS

Chemical shifts of aromatic fluorines were found to be sensitive to changes in the hydrogen bonding network that occurred when inhibitors transitioned from solvent into the HP or into ordered detergent micelles. Fluorescence intensities and emission maxima of autofluorescent compounds responded to changes in the local environment.

CONCLUSIONS

Gp41 - ligand binding occurred under all conditions, but was diminished in the presence of detergents. NMR and fluorescence studies revealed that dodecylphosphocholine (DPC) was a poor substitute for membrane in this system, while liposomes could mimic the membrane surroundings.

GENERAL SIGNIFICANCE

Our findings suggest that development of high potency small molecule binders to the HP may be frustrated by competition between binding to the HP and binding to the bilayer membrane.

摘要

背景

HIV-1 糖蛋白 41 外域的疏水性口袋(HP)由 N-七肽重复三聚体的两条链定义,位于介导 6HB 形成的蛋白质-蛋白质界面内。它是病毒融合抑制剂的潜在靶标,但由于其疏水性和与膜原位的接近性,难以对抑制剂相互作用进行分析。

方法

我们评估了 F NMR 和荧光法检测肽和小分子与 HP 结合的灵敏度,并探讨了非变性去污剂或磷脂作为共溶剂的效果,以及它们作为 gp41 周围膜环境潜在模拟物的效果。

结果

发现芳香氟的化学位移对抑制剂从溶剂进入 HP 或进入有序去污剂胶束时氢键网络的变化敏感。自荧光化合物的荧光强度和发射最大值对局部环境的变化有响应。

结论

在所有条件下都发生了 gp41-配体结合,但在去污剂存在下结合减少。NMR 和荧光研究表明,在该体系中,十二烷基磷酸胆碱(DPC)不能很好地替代膜,而脂质体可以模拟膜环境。

一般意义

我们的发现表明,开发与 HP 具有高结合亲和力的小分子可能会受到与 HP 结合和与双层膜结合之间的竞争的阻碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bfc/7540966/a6717c7159a3/nihms-1627001-f0002.jpg

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