A Time-Resolved Fluorescence Assay to Identify Small-Molecule Inhibitors of HIV-1 Fusion

Author:

Dams Géry1,Van Acker Koen2,Gustin Emmanuel1,Vereycken Inge1,Bunkens Lieve1,Holemans Pascale1,Smeulders Liesbet1,Clayton Reginald1,Ohagen Asa1,Hertogs Kurt1

Affiliation:

1. Tibotec BVBA, Mechelen, Belgium

2. Tibotec BVBA Gen De Wittelaan L 11B 3 2800 Mechelen, Belgium

Abstract

Fusion of host cell and human immunodeficiency virus type 1 (HIV-1) membranes is mediated by the 2 “heptad-repeat” regions of the viral gp41 protein. The collapse of the C-terminal heptad-repeat regions into the hydrophobic grooves of a coiled-coil formed by the corresponding homotrimeric N-terminal heptad-repeat regions generates a stable 6-helix bundle. This brings viral and cell membranes together for membrane fusion, facilitating viral entry. The authors developed an assay based on soluble peptides derived from the gp41 N-terminal heptad-repeat region (IQN36) as well as from the C-terminal region (C34). Both peptides were labeled with fluorophores, IQN36 with allophycocyanin (APC) and C34 with the lanthanide europium (Eu3+). Formation of the 6-helix bundle brings both fluorophores in close proximity needed for Förster resonance energy transfer (FRET). Compounds that interfere with binding of C34-Eu with IQN36-APC suppress the FRET signal. The assay was validated with various peptides and small molecules, and quenching issues were addressed. Evaluation of a diversified compound collection in a high-throughput screening campaign enabled identification of small molecules with different chemical scaffolds that inhibit this crucial intermediate in the HIV-1 entry process. This study's observations substantiate the expediency of time-resolved FRET-based assays to identify small-molecule inhibitors of protein-protein interactions. ( Journal of Biomolecular Screening 2007:865-874)

Publisher

Elsevier BV

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1. Analytical Measurement Systems;Devices and Systems for Laboratory Automation;2022-08-05

2. Quo vadis FRET? Förster’s method in the era of superresolution;Methods and Applications in Fluorescence;2020-07-07

3. Screening HIV-1 fusion inhibitors based on capillary electrophoresis head-end microreactor targeting to the core structure of gp41;Journal of Pharmaceutical and Biomedical Analysis;2016-02

4. Fluorescent Nanosensor for Drug Discovery;Springer Series in Biomaterials Science and Engineering;2015-11-07

5. Materials for FRET Analysis: Beyond Traditional Dye–Dye Combinations;FRET – Förster Resonance Energy Transfer;2013-10-04

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