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Updated: Jun 25, 2025

Investigation of RNA Synthesis Using 5-Bromouridine Labelling and Immunoprecipitation
Published on: May 3, 2018
The immune response to RNA suppresses nucleic acid synthesis by limiting ribose 5-phosphate
Pushpak Bhattacharjee1, Die Wang1, Dovile Anderson2
1Centre for Innate Immunity and Infectious Diseases, Hudson Institute of Medical Research and Department of Molecular and Translational Sciences, Monash University, Clayton, VIC, 3168, Australia.
Abstract:
During infection viruses hijack host cell metabolism to promote their replication. Here, analysis of metabolite alterations in macrophages exposed to poly I:C recognises that the antiviral effector Protein Kinase RNA-activated (PKR) suppresses glucose breakdown within the pentose phosphate pathway (PPP). This pathway runs parallel to central glycolysis and is critical to producing NADPH and pentose precursors for nucleotides. Changes in metabolite levels between wild-type and PKR-ablated macrophages show that PKR controls the generation of ribose 5-phosphate, in a manner distinct from its established function in gene expression but dependent on its kinase activity. PKR phosphorylates and inhibits the Ribose 5-Phosphate Isomerase A (RPIA), thereby preventing interconversion of ribulose- to ribose 5-phosphate. This activity preserves redox control but decreases production of ribose 5-phosphate for nucleotide biosynthesis. Accordingly, the PKR-mediated immune response to RNA suppresses nucleic acid production. In line, pharmacological targeting of the PPP during infection decreases the replication of the Herpes simplex virus. These results identify an immune response-mediated control of host cell metabolism and suggest targeting the RPIA as a potential innovative antiviral treatment.
Insights
The Protein Kinase RNA-activated (PKR) enzyme suppresses the pentose phosphate pathway during viral infections. This metabolic control by PKR inhibits nucleotide production, offering a new target for antiviral therapies.
Area of Science:
- Cellular metabolism
- Virology
- Immunology
Background:
- Viruses manipulate host cell metabolism for replication.
- The pentose phosphate pathway (PPP) is crucial for producing NADPH and nucleotide precursors.
- Protein Kinase RNA-activated (PKR) is an antiviral effector.
Purpose of the Study:
- To investigate the role of PKR in regulating host cell metabolism during viral infection.
- To elucidate the mechanism by which PKR affects the PPP.
- To identify potential antiviral therapeutic targets.
Main Methods:
- Metabolomic analysis of macrophages stimulated with poly I:C.
- Comparison of metabolite profiles between wild-type and PKR-ablated macrophages.
- Biochemical assays to determine PKR's enzymatic activity and substrate interactions.
Main Results:
- PKR suppresses glucose breakdown in the PPP, independent of its gene expression function.
- PKR phosphorylates and inhibits Ribose 5-Phosphate Isomerase A (RPIA).
- This inhibition reduces ribose 5-phosphate production, decreasing nucleotide biosynthesis and viral replication.
Conclusions:
- PKR exerts immune control over host cell metabolism by regulating the PPP.
- Targeting RPIA presents a novel strategy for antiviral treatment.
- Pharmacological inhibition of the PPP reduces herpes simplex virus replication.
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