Related Experiment Video
Updated: Jan 20, 2026

High-throughput Screening for Broad-spectrum Chemical Inhibitors of RNA Viruses
Published on: May 5, 2014
Advanced Molecular Tweezers Effectively Target Membranes Lacking Choline Headgroups for Broad-Spectrum Antiviral
Tatjana Weil1, Jan Lawrenz1, Estelle Taghuo Kaptouom2
1Institute of Molecular Virology, Ulm University Medical Center, 89081 Ulm, Germany.
Abstract:
Broad-spectrum antivirals are urgently required to counter present and emerging viral threats. It has previously been shown that the parental molecular tweezers CLR01 and CLR05 disrupt viral envelopes by complexing choline headgroups and that ester-functionalized "advanced" tweezers display markedly enhanced antiviral potency. Here, we determine the molecular basis of this improved activity. Using liposome leakage assays, giant unilamellar vesicles, NMR, Langmuir film balance experiments, and atomistic simulations, we demonstrate that advanced tweezers not only encapsulate choline-containing lipids but also engage lipids lacking choline headgroups via transient and conserved hydrophobic insertion events. These interactions preferentially destabilize membranes enriched in sphingomyelin, unsaturated acyl chains, or inverted cone-shaped lipids and are especially effective against small, highly curved particles resembling viral particles, explaining their broad antiviral activity for enveloped viruses. Our findings reveal a dual mechanism of action, choline binding and hydrophobic insertion, that underpins the broad-spectrum antiviral activity of advanced molecular tweezers and establish them as a promising new class of membrane-targeting antivirals for prophylactic and therapeutic use.
Related Concept Videos
11:34High-throughput Screening for Broad-spectrum Chemical Inhibitors of RNA Viruses
02:48Determining Antiviral Efficacy of Experimental Drugs Through a Plaque Assay
06:03Use of Viral Entry Assays and Molecular Docking Analysis for the Identification of Antiviral Candidates against Coxsackievirus A16
08:31Porcine Corneal Tissue Explant to Study the Efficacy of Herpes Simplex Virus-1 Antivirals
12:02Assays for the Identification of Novel Antivirals against Bluetongue Virus
06:54MR Molecular Imaging of Prostate Cancer with a Small Molecular CLT1 Peptide Targeted Contrast Agent

