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Energetic and frustration analysis of SARS-CoV-2 nucleocapsid protein mutations.
Haque, Shafiul; Khatoon, Fatima; Ashgar, Sami S; Faidah, Hani; Bantun, Farkad; Jalal, Naif A; Qashqari, Fadi S I; Kumar, Vijay.
  • Haque S; Research and Scientific Studies Unit, College of Nursing and Allied Health Sciences, Jazan University, Jazan, Saudi Arabia.
  • Khatoon F; Gilbert and Rose-Marie Chagoury School of Medicine, Lebanese American University, Beirut, Lebanon.
  • Ashgar SS; Centre of Medical and Bio-Allied Health Sciences Research, Ajman University, Ajman, United Arab Emirates.
  • Faidah H; Amity Institute of Neuropsychology & Neurosciences (AINN), Amity University, Noida, India.
  • Bantun F; Department of Microbiology, Faculty of Medicine, Umm Al-Qura University, Makkah, Saudi Arabia.
  • Jalal NA; Department of Microbiology, Faculty of Medicine, Umm Al-Qura University, Makkah, Saudi Arabia.
  • Qashqari FSI; Department of Microbiology, Faculty of Medicine, Umm Al-Qura University, Makkah, Saudi Arabia.
  • Kumar V; Department of Microbiology, Faculty of Medicine, Umm Al-Qura University, Makkah, Saudi Arabia.
Biotechnol Genet Eng Rev ; : 1-21, 2023 Jan 28.
Article in English | MEDLINE | ID: covidwho-2212332
ABSTRACT
The ongoing COVID-19 spreads worldwide with the ability to evolve in diverse human populations. The nucleocapsid (N) protein is one of the mutational hotspots in the SARS-CoV-2 genome. The N protein is an abundant RNA-binding protein critical for viral genome packaging. It comprises two large domains including the N-terminal domain (NTD) and the C-terminal domain (CTD) linked by the centrally located linker region. Mutations in N protein have been reported to increase the severity of disease by modulating viral transmissibility, replication efficiency as well as virulence properties of the virus in different parts of the world. To study the effect of N protein missense mutations on protein stability, function, and pathogenicity, we analyzed 228 mutations from each domain of N protein. Further, we have studied the effect of mutations on local residual frustration changes in N protein. Out of 228 mutations, 11 mutations were predicted to be deleterious and destabilized. Among these mutations, R32C, R191C, and R203 M mutations fall into disordered regions and show significant change in frustration state. Overall, this work reveals that by altering the energetics and residual frustration, N protein mutations might affect the stability, function, and pathogenicity of the SARS-CoV-2.
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Full text: Available Collection: International databases Database: MEDLINE Type of study: Prognostic study Language: English Journal: Biotechnol Genet Eng Rev Year: 2023 Document Type: Article Affiliation country: 02648725.2023.2170031

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Full text: Available Collection: International databases Database: MEDLINE Type of study: Prognostic study Language: English Journal: Biotechnol Genet Eng Rev Year: 2023 Document Type: Article Affiliation country: 02648725.2023.2170031