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Updated: Jul 14, 2025

High-throughput Screening for Broad-spectrum Chemical Inhibitors of RNA Viruses
Published on: May 5, 2014
Inhibiting Glutamine Metabolism Blocks Coronavirus Replication in Mammalian Cells
Abstract:
Developing therapeutic strategies against COVID-19 has gained widespread interest given the likelihood that new viral variants will continue to emerge. Here we describe one potential therapeutic strategy which involves targeting members of the glutaminase family of mitochondrial metabolic enzymes (GLS and GLS2), which catalyze the first step in glutamine metabolism, the hydrolysis of glutamine to glutamate. We show three examples where GLS expression increases during coronavirus infection of host cells, and another in which GLS2 is upregulated. The viruses hijack the metabolic machinery responsible for glutamine metabolism to generate the building blocks for biosynthetic processes and satisfy the bioenergetic requirements demanded by the 'glutamine addiction' of virus-infected host cells. We demonstrate how genetic silencing of glutaminase enzymes reduces coronavirus infection and that newer members of two classes of small molecule allosteric inhibitors targeting these enzymes, designated as SU1, a pan-GLS/GLS2 inhibitor, and UP4, which is specific for GLS, block viral replication in mammalian epithelial cells. Overall, these findings highlight the importance of glutamine metabolism for coronavirus replication in human cells and show that glutaminase inhibitors can block coronavirus infection and thereby may represent a novel class of anti-viral drug candidates.
Teaser:
Inhibitors targeting glutaminase enzymes block coronavirus replication and may represent a new class of anti-viral drugs.
Insights
Targeting glutaminase enzymes, crucial for glutamine metabolism, can inhibit coronavirus replication. Glutaminase inhibitors show promise as a novel therapeutic strategy against emerging viral variants.
Area of Science:
- Biochemistry
- Virology
- Metabolic pathways
Background:
- Emerging viral variants necessitate novel therapeutic strategies against COVID-19.
- Coronaviruses hijack host cell metabolism, specifically glutamine metabolism, for replication.
- Glutaminase enzymes (GLS and GLS2) are key regulators of glutamine metabolism.
Approach:
- Investigated the role of glutaminase family enzymes (GLS and GLS2) in coronavirus infection.
- Examined the effect of genetic silencing and small molecule inhibitors (SU1, UP4) on viral replication.
- Analyzed GLS and GLS2 expression changes during coronavirus infection in host cells.
Key Points:
- GLS expression is upregulated in three coronavirus infection models; GLS2 is upregulated in another.
- Genetic silencing of glutaminase enzymes reduces coronavirus infection.
- Small molecule inhibitors SU1 (pan-GLS/GLS2) and UP4 (GLS-specific) block viral replication in mammalian cells.
Conclusions:
- Glutamine metabolism is critical for coronavirus replication in human cells.
- Glutaminase inhibitors represent a potential new class of anti-viral drugs against coronaviruses.
- Targeting glutaminase offers a promising therapeutic avenue for combating viral infections.
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