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A bioinformatics approach to characterize a hypothetical protein Q6S8D9_SARS of SARS-CoV

Characterization as well as prediction of the secondary and tertiary structure of hypothetical proteins from their amino acid sequences uploaded in databases by in silico approach are the critical issues in computational biology. Severe acute respiratory syndrome–associated coronavirus (SARS-CoV), w...

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Autores principales: Rahman, Md Foyzur, Hasan, Rubait, Biswas, Mohammad Shahangir, Shathi, Jamiatul Husna, Hossain, Md Faruk, Yeasmin, Aoulia, Abedin, Mohammad Zakerin, Hossain, Md Tofazzal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korea Genome Organization 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10085737/
https://www.ncbi.nlm.nih.gov/pubmed/37037461
http://dx.doi.org/10.5808/gi.22021
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author Rahman, Md Foyzur
Hasan, Rubait
Biswas, Mohammad Shahangir
Shathi, Jamiatul Husna
Hossain, Md Faruk
Yeasmin, Aoulia
Abedin, Mohammad Zakerin
Hossain, Md Tofazzal
author_facet Rahman, Md Foyzur
Hasan, Rubait
Biswas, Mohammad Shahangir
Shathi, Jamiatul Husna
Hossain, Md Faruk
Yeasmin, Aoulia
Abedin, Mohammad Zakerin
Hossain, Md Tofazzal
author_sort Rahman, Md Foyzur
collection PubMed
description Characterization as well as prediction of the secondary and tertiary structure of hypothetical proteins from their amino acid sequences uploaded in databases by in silico approach are the critical issues in computational biology. Severe acute respiratory syndrome–associated coronavirus (SARS-CoV), which is responsible for pneumonia alike diseases, possesses a wide range of proteins of which many are still uncharacterized. The current study was conducted to reveal the physicochemical characteristics and structures of an uncharacterized protein Q6S8D9_SARS of SARS-CoV. Following the common flowchart of characterizing a hypothetical protein, several sophisticated computerized tools e.g., ExPASy Protparam, CD Search, SOPMA, PSIPRED, HHpred, etc. were employed to discover the functions and structures of Q6S8D9_SARS. After delineating the secondary and tertiary structures of the protein, some quality evaluating tools e.g., PROCHECK, ProSA-web etc. were performed to assess the structures and later the active site was identified also by CASTp v.3.0. The protein contains more negatively charged residues than positively charged residues and a high aliphatic index value which make the protein more stable. The 2D and 3D structures modeled by several bioinformatics tools ensured that the proteins had domain in it which indicated it was functional protein having the ability to trouble host antiviral inflammatory cytokine and interferon production pathways. Moreover, active site was found in the protein where ligand could bind. The study was aimed to unveil the features and structures of an uncharacterized protein of SARS-CoV which can be a therapeutic target for development of vaccines against the virus. Further research are needed to accomplish the task.
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spelling pubmed-100857372023-04-12 A bioinformatics approach to characterize a hypothetical protein Q6S8D9_SARS of SARS-CoV Rahman, Md Foyzur Hasan, Rubait Biswas, Mohammad Shahangir Shathi, Jamiatul Husna Hossain, Md Faruk Yeasmin, Aoulia Abedin, Mohammad Zakerin Hossain, Md Tofazzal Genomics Inform Original Article Characterization as well as prediction of the secondary and tertiary structure of hypothetical proteins from their amino acid sequences uploaded in databases by in silico approach are the critical issues in computational biology. Severe acute respiratory syndrome–associated coronavirus (SARS-CoV), which is responsible for pneumonia alike diseases, possesses a wide range of proteins of which many are still uncharacterized. The current study was conducted to reveal the physicochemical characteristics and structures of an uncharacterized protein Q6S8D9_SARS of SARS-CoV. Following the common flowchart of characterizing a hypothetical protein, several sophisticated computerized tools e.g., ExPASy Protparam, CD Search, SOPMA, PSIPRED, HHpred, etc. were employed to discover the functions and structures of Q6S8D9_SARS. After delineating the secondary and tertiary structures of the protein, some quality evaluating tools e.g., PROCHECK, ProSA-web etc. were performed to assess the structures and later the active site was identified also by CASTp v.3.0. The protein contains more negatively charged residues than positively charged residues and a high aliphatic index value which make the protein more stable. The 2D and 3D structures modeled by several bioinformatics tools ensured that the proteins had domain in it which indicated it was functional protein having the ability to trouble host antiviral inflammatory cytokine and interferon production pathways. Moreover, active site was found in the protein where ligand could bind. The study was aimed to unveil the features and structures of an uncharacterized protein of SARS-CoV which can be a therapeutic target for development of vaccines against the virus. Further research are needed to accomplish the task. Korea Genome Organization 2023-03-31 /pmc/articles/PMC10085737/ /pubmed/37037461 http://dx.doi.org/10.5808/gi.22021 Text en (c) 2023, Korea Genome Organization https://creativecommons.org/licenses/by/4.0/(CC) This is an open-access article distributed under the terms of the Creative Commons Attribution license(https://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Rahman, Md Foyzur
Hasan, Rubait
Biswas, Mohammad Shahangir
Shathi, Jamiatul Husna
Hossain, Md Faruk
Yeasmin, Aoulia
Abedin, Mohammad Zakerin
Hossain, Md Tofazzal
A bioinformatics approach to characterize a hypothetical protein Q6S8D9_SARS of SARS-CoV
title A bioinformatics approach to characterize a hypothetical protein Q6S8D9_SARS of SARS-CoV
title_full A bioinformatics approach to characterize a hypothetical protein Q6S8D9_SARS of SARS-CoV
title_fullStr A bioinformatics approach to characterize a hypothetical protein Q6S8D9_SARS of SARS-CoV
title_full_unstemmed A bioinformatics approach to characterize a hypothetical protein Q6S8D9_SARS of SARS-CoV
title_short A bioinformatics approach to characterize a hypothetical protein Q6S8D9_SARS of SARS-CoV
title_sort bioinformatics approach to characterize a hypothetical protein q6s8d9_sars of sars-cov
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10085737/
https://www.ncbi.nlm.nih.gov/pubmed/37037461
http://dx.doi.org/10.5808/gi.22021
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