Barozi, Victor. Rhodes University; 2020. Understanding of the underlying resistance mechanism of the Kat-G protein against isoniazid in Mycobacterium tuberculosis using bioinformatics approaches.
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Barozi, Victor. Rhodes University; 2023. In silico characterization of missense mutations in infectious diseases: case studies of tuberculosis and COVID-19.
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Okeke, Chiamaka J, Musyoka, Thommas M, Sheik Amamuddy, Olivier, Barozi, Victor, Tastan Bishop, Özlem. Elsevier; 2021. Allosteric pockets and dynamic residue network hubs of falcipain 2 in mutations including those linked to artemisinin resistance.
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Sheik Amamuddy, Olivier, Boateng, Rita A, Barozi, Victor, Nyamai, Dorothy W, Tastan Bishop, Özlem. Elsevier; 2021. Novel dynamic residue network analysis approaches to study allosteric modulation: SARS-CoV-2 Mpro and its evolutionary mutations as a case study.
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Barozi, Victor, Musyoka, Thommas M, Sheik Amamuddy, Olivier, Tastan Bishop, Özlem. Deciphering Isoniazid Drug Resistance Mechanisms on Dimeric Mycobacterium tuberculosis KatG via Post-molecular Dynamics Analyses Including Combined Dynamic Residue Network Metrics. 2022.