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Assays for the Identification of Novel Antivirals against Bluetongue Virus
Published on: October 11, 2013
Rational Design and Bioactive Screening of Peptide Inhibitors Targeting Host-Pathogen Interactions in Severe Fever
Lixin Yang1, Zhipeng Hu1, Tingting Zhou2
1Center of Drug Discovery, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, P. R. China.
Abstract:
Severe fever with thrombocytopenia syndrome virus (SFTSV) poses a significant threat to public health, with limited therapeutic options available. This study focuses on the rational design and screening of peptide inhibitors targeting host-pathogen interactions, specifically between the viral Gn glycoprotein and key host cell receptors, DC-SIGN and NMMHC-IIA. By employing molecular dynamics simulations, alanine scanning, and peptide docking techniques, peptides were designed to disrupt these protein-protein interactions. Among the synthesized candidates, peptides II-1 and II-4 demonstrate potent inhibitory activity against SFTSV infection, with reduced TCID50 values in cellular assays and displayed exceptional affinity (KD = 7.381 × 10-8 M, 1.439 × 10-8 M), These peptides also exhibit low cytotoxicity and hemolytic toxicity, highlighting their safety profile. Molecular dynamics simulations confirm strong binding affinities for these peptides, underpinned by stable hydrogen bonding interactions. This research provides a promising platform for developing peptide-based therapeutics targeting SFTSV, paving the way for further preclinical evaluation and clinical applications.

