In silico screening of potential plant peptides against the non-structural proteins of dengue virus

Author:

Reena G1,Ranjani R2,Goutham D3,Sangeetha K1

Affiliation:

1. Saveetha School of Engineering, SIMATS, Thandalam, Chennai, India

2. Department of Virology, Sri Venkateswara University, Tirupathi, Andhra Pradesh, India

3. Department of Computer Science, College of Engineering & Sri Venkateswara University, Tirupathi, Andhra Pradesh, India

Abstract

Background & objectives: Peptides isolated from different sources of plants have the advantages of specificity, lower toxicity, and increased therapeutic effects; hence, it is necessary to search for newer antivirals from plant sources for the treatment of dengue viral infections. Methods: In silico screening of selected plant peptides against the non-structural protein 1, NS3 protease domain (NS2B-NS3Pro) with the cofactor and ATPase/helicase domain (NS3 helicase domain/NS3hel) of dengue virus was performed. The physicochemical characteristics of the peptides were calculated using Protparam tools, and the allergenicity and toxicity profiles were assessed using allergenFP and ToxinPred, respectively. Results: Among the tested compounds, Ginkbilobin demonstrated higher binding energy against three tested nonstructural protein targets. Kalata B8 demonstrated maximum binding energy against NSP-1 and NSP-2, whereas Circulin A acted against the NSP3 protein of dengue virus. Interpretation & conclusion: The three compounds identified by in silico screening can be tested in vitro, which could act as potential leads as they are involved in hampering the replication of the dengue virus by interacting with the three prime non-structural proteins.

Publisher

Medknow

Reference23 articles.

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