COVID-19 and One-Carbon Metabolism

COVID-19 и одноуглеродный метаболизм
Joanna Perła‐Kaján, Hieronim Jakubowski
2022-04-10

COVID-19SARS-CoV-2de novo purine biosynthesisglutathione metabolismone-carbon metabolism
Dysregulation of one-carbon metabolism affects a wide range of biological processes and is associated with a number of diseases, including cardiovascular disease, dementia, neural tube defects, and cancer. Accumulating evidence suggests that one-carbon metabolism plays an important role in COVID-19. The symptoms of long COVID-19 are similar to those presented by subjects suffering from vitamin B12 deficiency (pernicious anemia). The metabolism of a cell infected by the SARS-CoV-2 virus is reshaped to fulfill the need for massive viral RNA synthesis, which requires de novo purine biosynthesis involving folate and one-carbon metabolism. Many aspects of host sulfur amino acid metabolism, particularly glutathione metabolism underlying antioxidant defenses, are also taken over by the SARS-CoV-2 virus. The purpose of this review is to summarize recent findings related to one-carbon metabolism and sulfur metabolites in COVID-19 and discuss how they inform strategies to combat the disease.
1
Dysregulated one-carbon metabolism is implicated in COVID-19 and may contribute to disease-related biological dysfunction.
2
Findings on one-carbon and sulfur metabolism may inform metabolic strategies for combating COVID-19.
3
Long COVID-19 symptoms resemble those associated with vitamin B12 deficiency, suggesting a potential link between the conditions.
4
SARS-CoV-2 also alters host sulfur amino acid metabolism, including glutathione pathways that support antioxidant defenses.
5
SARS-CoV-2 infection reshapes host-cell metabolism to support extensive viral RNA synthesis through folate- and one-carbon-dependent de novo purine biosynthesis.

One-carbon and sulfur amino acid metabolism in COVID-19, including SARS-CoV-2-infected cells and individuals with COVID-19

Dysregulation and metabolic reshaping of one-carbon and sulfur metabolism, including folate-dependent purine synthesis, glutathione-mediated antioxidant defense, and their implications for COVID-19 symptoms and disease-control strategies

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2022-04-10
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Joanna Perła‐Kaján
Hieronim Jakubowski
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