EventsThe 26th International Electronic Conference on Synthetic Organic Chemistry
Published
This submission belongs to the session S5. Computational Chemistry of the event The 26th International Electronic Conference on Synthetic Organic Chemistry
Published date
14 Nov, 2022
Academic Editor
author-avatarJulio A. Seijas
Citation
Abu Saim Mohammad Saikat, Dipta Dey, Apurbo Kumar Paul, Computational Approaches for Molecular Characterization and Structure-based Functional Elucidation of the Matrix Protein from Nipah henipavirus, in Proceedings of The 26th International Electronic Conference on Synthetic Organic Chemistry, 15 November–30 November 2022, MDPI: Basel, Switzerland, doi: 10.3390/ecsoc-26-13522
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Computational Approaches for Molecular Characterization and Structure-based Functional Elucidation of the Matrix Protein from Nipah henipavirus

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Apurbo Kumar Paul 2
1. Department of Biochemistry and Molecular Biology, Life Science Faculty, Bangabandhu Sheikh Mujibur Rahman Science and Technology University, Gopalganj 8100, Bangladesh, Bangladesh
2. Department of Materials Science and Engineering, University of Rajshahi, Rajshahi 6205, Bangladesh
3. Department of Biochemistry and Molecular Biology, Life Science Faculty, Bangabandhu Sheikh Mujibur Rahman Science and Technology University, Gopalganj
Abstract

Nipah henipavirus is an emerging RNA virus that poses a danger to world safety due to its high fatality rate. The Nipah virus has caused several illness epidemics in South and Southeast Asia. The matrix protein of Nipah henipavirus plays a crucial function in linking the viral envelope to the virus core. Connecting the viral envelope to the virus core is critical for virus assembly. Through analyses of structural and functional protein explanations, bioinformatics tools can aid in our comprehension of the protein. This study intends to provide structural and functional annotations to proteins. Using in-silico approaches, the analysis also assigns the protein's physicochemical properties, three-dimensional structure, and functional annotation. The in silico research validated the protein’s hydrophilic nature and alpha (α) helix-dominated secondary structure. The protein's tertiary structure model is generally consistent based on various quality evaluation approaches. The functional explanation claimed that the protein is a structural protein that connects the viral envelope to the virus core, a protein that is necessary for virus assembly. This study reveals the importance of the matrix protein as a functional protein needed by Nipah henipavirus.

Keywords
Nipah henipavirus
Matrix protein
Protein nature
Functional annotation
Protein characterization
Manuscript
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