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Updated: Sep 29, 2025

Early Viral Entry Assays for the Identification and Evaluation of Antiviral Compounds
Published on: October 29, 2015
Conserved Targets to Prevent Emerging Coronaviruses
Fernanda Gonzalez Lomeli1, Nicole Elmaraghy1, Anthony Castro1
1Biology Department, California State University, San Bernardino, CA 92407, USA.
Abstract:
Novel coronaviruses emerged as zoonotic outbreaks in humans in 2003 (SARS), 2012 (MERS), and notably in 2019 (SARS2), which resulted in the COVID-19 pandemic, causing worldwide health and economic disaster. Vaccines provide the best protection against disease but cannot be developed and engineered quickly enough to prevent emerging viruses, zoonotic outbreaks, and pandemics. Antivirals are the best first line of therapeutic defense against novel emerging viruses. Coronaviruses are plus sense, single stranded, RNA genome viruses that undergo frequent genetic mutation and recombination, allowing for the emergence of novel coronavirus strains and variants. The molecular life cycle of the coronavirus family offers many conserved activities to be exploited as targets for antivirals. Here, we review the molecular life cycle of coronaviruses and consider antiviral therapies, approved and under development, that target the conserved activities of coronaviruses. To identify additional targets to inhibit emerging coronaviruses, we carried out in silico sequence and structure analysis of coronavirus proteins isolated from bat and human hosts. We highlight conserved and accessible viral protein domains and residues as possible targets for the development of viral inhibitors. Devising multiple antiviral therapies that target conserved viral features to be used in combination is the best first line of therapeutic defense to prevent emerging viruses from developing into outbreaks and pandemics.
Insights
Antiviral therapies targeting conserved coronavirus features are crucial for pandemic prevention. Combining multiple antivirals offers the best defense against emerging viral threats and novel strains.
Area of Science:
- Virology
- Drug Discovery
- Public Health
Background:
- Emerging coronaviruses (SARS, MERS, SARS-CoV-2) cause significant global health and economic crises.
- Vaccines are slow to develop; antivirals are essential for immediate therapeutic defense against novel viruses.
- Coronaviruses are RNA viruses prone to mutations, necessitating continuous development of effective antiviral strategies.
Purpose of the Study:
- To review the coronavirus life cycle and existing/developing antiviral therapies.
- To identify novel, conserved viral targets for inhibiting emerging coronaviruses.
- To propose combination antiviral therapies for pandemic prevention.
Main Methods:
- Literature review of coronavirus life cycle and antiviral therapies.
- In silico sequence and structure analysis of coronavirus proteins from bat and human hosts.
- Identification of conserved and accessible viral protein domains as potential drug targets.
Main Results:
- The coronavirus life cycle presents conserved targets for antiviral development.
- In silico analysis revealed specific conserved protein domains and residues.
- These conserved features represent promising targets for novel antiviral inhibitors.
Conclusions:
- Antivirals are the primary therapeutic defense against emerging coronaviruses.
- Targeting conserved viral features is key to developing broad-spectrum antivirals.
- Combination antiviral therapies are essential for preventing viral outbreaks and pandemics.
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