| Literature DB >> 30417659 |
Xiao Huan Liu1, Jiong Feng Zhao2, Tao Wang1,2, Mian Bin Wu2,3.
Abstract
It is feasible to rationally modify existing bioactive components for new drug development, achieving molecules with improved biological activities. In this study, rational modification of chlorotetaine was carried out following in silico molecular modelling to enhance interactions between the fungal oligopeptide transmembrane transporter PTR22 and the ligand. The peptide obtained with the lowest docking energy, Lys-chlorotetaine (LC), displayed an improved antifungal effect compared with chlorotetaine. The lowest minimum inhibitory concentration observed against a tested pathogen was 1.47 µg/mL (Candida krusei CBS573), which was satisfactory. To thoroughly explore the detailed interactions between the transporter and LC, molecular dynamics simulation was also performed, which revealed that LC could bind to the transporter via different intermolecular interactions from chlorotetaine, and predicted electrostatic interactions (salt-bridges) would enable the more efficient release of LC. This study provides a simple and reliable method for the rational modification of oligopeptide antibiotics.Entities:
Keywords: Chlorotetaine; antifungal peptide; drug design; transmembrane transporter
Year: 2018 PMID: 30417659 DOI: 10.1080/14786419.2018.1528582
Source DB: PubMed Journal: Nat Prod Res ISSN: 1478-6419 Impact factor: 2.861