Analysis of mutations of defensin protein using accelerated molecular dynamics simulations

Author:

Pandey Bharati,Tyagi Chetna,Prajapati Gopal Kumar,Mishra Awdhesh Kumar,Hashem Abeer,Alqarawi Abdulaziz A.,Abd_Allah Elsayed Fathi,Mohanta Tapan KumarORCID

Abstract

Plant defensins possess diverse biological functions that include antifungal and antibacterial activities and α-amylase and trypsin inhibitory properties. Two mutations, G9R and V39R, were confirmed to increase the antifungal activity ofRaphanus sativusantifungal protein 2 (RsAFP2). Accelerated Molecular Dynamics (aMD) were carried out to examine the conformational changes present in these RsAFP2 mutants, and its two closest homologs compared to the wild-type protein. Specifically, the root mean square fluctuation values for the eight cysteine amino acids involved in the four disulfide bonds were low in the V39R mutant compared to the wild-type. Additionally, analysis of the free energy change revealed that G9R and V39R mutations exert a neutral and stabilizing effect on RsAFP2 conformation, and this is supported by the observed lower total energy of mutants compared to the wild-type, suggesting that enhanced stability of the mutants. However, MD simulations to a longer time scale would aid in capturing more conformational state of the wild-type and mutants defensin protein. Furthermore, the aMD simulations on fungal mimic membranes with RsAFP2 and its mutants and homologs showed that the mutant proteins caused higher deformation and water diffusion than the native RsAFP2, especially the V39R mutant. The mutant variants seem to interact by specifically targeting the POPC and POPI lipids amongst others. This work highlights the stabilizing effect of mutations at the 9thand 39thpositions of RsAFP2 and their increased membrane deformation activity.

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Strategies and opportunities for engineering antifungal peptides for therapeutic applications;Current Opinion in Biotechnology;2023-06

2. The γ-Core Motif Peptides of Plant AMPs as Novel Antimicrobials for Medicine and Agriculture;International Journal of Molecular Sciences;2022-12-28

3. Antimicrobial Peptides with Anti-Candida Activity;International Journal of Molecular Sciences;2022-08-17

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