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dc.creatorPopović, Marko
dc.creatorPopović, Marta
dc.date.accessioned2023-05-03T11:41:21Z
dc.date.available2023-05-03T11:41:21Z
dc.date.issued2022
dc.identifier.issn2352-3522
dc.identifier.urihttps://cer.ihtm.bg.ac.rs/handle/123456789/6074
dc.description.abstractSince the beginning of the COVID-19 pandemic, SARS-CoV-2 has mutated several times into new strains, with an increased infectivity. Infectivity of SARS-CoV-2 strains depends on binding affinity of the virus to its host cell receptor. In this paper, we quantified the binding affinity using Gibbs energy of binding and analyzed the competition between SARS-CoV-2 strains as an interference phenomenon. Gibbs energies of binding were calculated for several SARS-SoV-2 strains, including Hu-1 (wild type), B.1.1.7 (alpha), B.1.351 (beta), P.1 (Gamma), B.1.36 and B.1.617 (Delta). The least negative Gibbs energy of binding is that of Hu-1 strain, -37.97 kJ/mol. On the other hand, the most negative Gibbs energy of binding is that of the Delta strain, -49.50 kJ/mol. We used the more negative Gibbs energy of binding to explain the increased infectivity of newer SARS-CoV-2 strains compared to the wild type. Gibbs energies of binding was found to decrease chronologically, with appearance of new strains. The ratio of Gibbs energies of binding of mutated strains and wild type was used to define a susceptibility coefficient, which is an indicator of viral interference, where a virus can prevent or partially inhibit infection with another virus.sr
dc.language.isoensr
dc.publisherElseviersr
dc.rightsrestrictedAccesssr
dc.sourceMicrobial Risk Analysissr
dc.subjectVirus-virus-host interactionssr
dc.subjectSARS-CoV-2 threatsr
dc.subjectGibbs energy of bindingsr
dc.subjectSARS CoV-2 delta strainsr
dc.subjectCOVID-19sr
dc.titleStrain Wars: Competitive interactions between SARS-CoV-2 strains are explained by Gibbs energy of antigen-receptor bindingsr
dc.typearticlesr
dc.rights.licenseARRsr
dc.rights.holderElseviersr
dc.citation.volume21
dc.citation.spage100202
dc.citation.rankM23~
dc.identifier.pmid35155724
dc.identifier.doi10.1016/j.mran.2022.100202
dc.identifier.scopus2-s2.0-85124416621
dc.identifier.wos00081478650001
dc.type.versionpublishedVersionsr


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