Evaluating the drug resistance mechanisms of multiple SARS-CoV-2 non-structural proteins, including the main protease and the RNA-dependent RNA polymerase, as well as PLPro, EndoU, and Mac1, which contribute to viral replication and counter host innate immune responses are discussed.
Abstract
Various antiviral drug therapies have been developed for the treatment of coronaviruses, particularly SARS-CoV-2. However, the emergence of drug-resistant mutations is detrimental to clinical efficacy and global public health. Antiviral usage exerts selective pressures on viruses that manufacture an environment for resistant strains to emerge, in some cases at a fitness cost. However, the appearance of a compensatory mutation can restore or improve viral fitness, allowing the strain to persist and spread in a population. Here we evaluate the drug resistance mechanisms of multiple SARS-CoV-2 non-structural proteins, including the main protease (Mpro) and the RNA-dependent RNA polymerase (RdRP), which drive polyprotein processing and viral RNA replication, as well as PLPro, EndoU, and Mac1, which contribute to viral replication and counter host innate immune responses. We also discuss several methods that could be used to avoid drug resistance in the future. By integrating the understanding of molecular mechanisms of antiviral treatment with surveillance of resistance-associated mutations and new drug therapies, appropriate clinical approaches can be developed to reduce the impact of drug resistance.
A genome engineering technology is used to change a single amino acid in the viruses’ main protease enzyme to match that of circulating Omicron isolates to demonstrate antiviral efficacy of approved drugs and uncover mutants with reduced drug sensitivity.
The reduced pathogenicity of rSARS-CoV-2 Nsp1 mutants highlights the potential for targeting Nsp1 for rational design of viral inhibitors and development of live-attenuated vaccine strategies as effective prophylactic and therapeutic treatments to combat SARS-CoV-2 and possibly other CoV infections.
Antiviral treatment (ART) resistance is an emerging global phenomenon that reduces the effectiveness of antiviral therapies and raises strong challenges for public health systems. This literature review focuses on the factors that contribute to developing antiviral drug resistance and the scope of pharmacogenetics. Stu...
L. Al-Eitan, Rania Al-Samama'h· Reviews in Medical Virology· 0 citations
The extensive use of antiviral drugs for COVID-19 and influenza has increased their release into clinical and environmental settings, yet their potential to promote bacterial antibiotic cross-resistance remains poorly understood. Here, we investigated the antibacterial off-target effects of four clinically used anti-IF...
Potently inhibiting the functions of the replication proteins of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), or inducing erroneous editing of newly replicated SARS-CoV-2 RNA strands during replication, is among the most effective anti-SARS-CoV-2 approaches. Nucleosides and their phosphorylated derivat...
A. Rabie, Imane G. El Idrissi· RSC Advances· 0 citations
OVID-19, or novel coronavirus pneumonia, is a global infectious disease caused by SARS-CoV-2, which has had a profound impact on public health, socioeconomics, and people's daily lives since its outbreak in 2019. This article reviews the structural composition, mutation evolution, transmission characteristics, and prev...