REAL

Structural and Functional Analysis of Groundnut bud necrosis virus (GBNV) Using Computational and Biochemical Approaches

Jamwal, Rohit and Devi, Pukhrambam Pushpa and Rani, Vaishali and Rawat, Nitish and Daimei, Guisuibou and Saurav, Gunjan Kumar and Renukadevi, Perumal and Yadav, Karuna and Rajagopal, Raman (2025) Structural and Functional Analysis of Groundnut bud necrosis virus (GBNV) Using Computational and Biochemical Approaches. MOLECULAR BIOTECHNOLOGY, 67 (1). pp. 246-259. ISSN 1073-6085

[img] Text
s12033-024-01046-4-1.pdf - Published Version
Restricted to Registered users only

Download (1MB) | Request a copy

Abstract

Groundnut bud necrosis virus (GBNV) belonging to the genus Orthotospovirus is transmitted by its vector Thrips palmi. It is a tri-segmented RNA virus that consists of L, M, and S RNA segments. We analysed the secondary structure features of GBNV proteins through various software and predicted the transmembrane helix, glycosylation, and signal peptidase sites within the GBNV protein sequences (G(N), G(C), N, NSm, and NSs). In glycoprotein sequence, extended strands are predominant (52.87%) whereas the N protein sequence mostly contains alpha helices (47.46%). The random coils are present in movement protein (43.97%) and structural protein (39.41%). We generated the 3D structure of G(N) and N protein using SWISS MODEL software and quality is validated through PROCHECK and PDBsum software. We also expressed the GBNV proteins (G(N), G(C), N, NSm, and NSs) in bacterial expression system. The recombinant proteins were used to raise polyclonal antibodies in mice. Our study will be useful in understanding GBNV protein structures in further detail by analysing the important domains that interact with the thrips proteins. This will further aid us in understanding virus-vector relationship through the application of protein-protein interaction and other immunodiagnostic techniques.

Item Type: Article
Additional Information: Funding Agency and Grant Number: University of Delhi; DST-PURSE; UGC Funding text: We thank Ashok Kumar and Ravi Singh for their lab assistance. DST-PURSE and Delhi University-IoE grant funded part of this work. Rohit Jamwal thanks UGC for providing financial support. Online Published: 30 January 2024
Uncontrolled Keywords: ANTIBODIES; SPOTTED-WILT-VIRUS; bioinformatics; genome organization; nucleocapsid protein; COMPLETE NUCLEOTIDE-SEQUENCE; Biochemistry & Molecular Biology; 3D model; CELL-TO-CELL; GBNV proteins; MOVEMENT PROTEIN NSM; TUBULE FORMATION; TOSPOVIRUS TSWV; M RNA;
Subjects: Q Science / természettudomány > QH Natural history / természetrajz > QH301 Biology / biológia
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 11 Mar 2026 10:25
Last Modified: 11 Mar 2026 10:25
URI: https://real.mtak.hu/id/eprint/235543

Actions (login required)

Edit Item Edit Item