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Defective ORF8 dimerization in SARS-CoV-2 delta variant leads to a better adaptive immune response due to abrogation of ORF8-MHC1 interaction.
Chaudhari, Armi M; Singh, Indra; Joshi, Madhvi; Patel, Amrutlal; Joshi, Chaitanya.
  • Chaudhari AM; Gujarat Biotechnology Research Centre (GBRC), Department of Science and Technology, Government of Gujarat, 6th Floor, Block B&D, MS Building, Gandhinagar, 382011, India.
  • Singh I; Gujarat Biotechnology Research Centre (GBRC), Department of Science and Technology, Government of Gujarat, 6th Floor, Block B&D, MS Building, Gandhinagar, 382011, India.
  • Joshi M; Gujarat Biotechnology Research Centre (GBRC), Department of Science and Technology, Government of Gujarat, 6th Floor, Block B&D, MS Building, Gandhinagar, 382011, India.
  • Patel A; Gujarat Biotechnology Research Centre (GBRC), Department of Science and Technology, Government of Gujarat, 6th Floor, Block B&D, MS Building, Gandhinagar, 382011, India.
  • Joshi C; Gujarat Biotechnology Research Centre (GBRC), Department of Science and Technology, Government of Gujarat, 6th Floor, Block B&D, MS Building, Gandhinagar, 382011, India. director@gbrc.res.in.
Mol Divers ; 2022 Mar 03.
Article in English | MEDLINE | ID: covidwho-2228737
ABSTRACT
In India, during the second wave of the COVID-19 pandemic, the breakthrough infections were mainly caused by the SARS-COV-2 delta variant (B.1.617.2). It was reported that, among majority of the infections due to the delta variant, only 9.8% percent cases required hospitalization, whereas only 0.4% fatality was observed. Sudden dropdown in COVID-19 infections cases were observed within a short timeframe, suggesting better host adaptation with evolved delta variant. Downregulation of host immune response against SARS-CoV-2 by ORF8 induced MHC-I degradation has been reported earlier. The Delta variant carried mutations (deletion) at Asp119 and Phe120 amino acids which are critical for ORF8 dimerization. The deletions of amino acids Asp119 and Phe120 in ORF8 of delta variant resulted in structural instability of ORF8 dimer caused by disruption of hydrogen bonds and salt bridges as revealed by structural analysis and MD simulation studies. Further, flexible docking of wild type and mutant ORF8 dimer revealed reduced interaction of mutant ORF8 dimer with MHC-I as compared to wild-type ORF8 dimer with MHC-1, thus implicating its possible role in MHC-I expression and host immune response against SARS-CoV-2. We thus propose that mutant ORF8 of SARS-CoV-2 delta variant may not be hindering the MHC-I expression thereby resulting in a better immune response against the SARS-CoV-2 delta variant, which partly explains the possible reason for sudden drop of SARS-CoV-2 infection rate in the second wave of SARS-CoV-2 predominated by delta variant in India.
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Full text: Available Collection: International databases Database: MEDLINE Topics: Vaccines / Variants Language: English Journal subject: Molecular Biology Year: 2022 Document Type: Article Affiliation country: S11030-022-10405-9

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Full text: Available Collection: International databases Database: MEDLINE Topics: Vaccines / Variants Language: English Journal subject: Molecular Biology Year: 2022 Document Type: Article Affiliation country: S11030-022-10405-9