Epstein-Barr-Virus-Induced One-Carbon Metabolism Drives B Cell Transformation.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 31257153.
- Also identified by DOI 10.1016/j.cmet.2019.06.003 and PMC identifier 6720460.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
Epstein-Barr virus (EBV) causes Burkitt, Hodgkin, and post-transplant B cell lymphomas. How EBV remodels metabolic pathways to support rapid B cell outgrowth remains largely unknown. To gain insights, primary human B cells were profiled by tandem-mass-tag-based proteomics at rest and at nine time points after infection; >8,000 host and 29 viral proteins were quantified, revealing mitochondrial remodeling and induction of one-carbon (1C) metabolism. EBV-encoded EBNA2 and its target MYC were required for upregulation of the central mitochondrial 1C enzyme MTHFD2, which played key roles in EBV-driven B cell growth and survival. MTHFD2 was critical for maintaining elevated NADPH levels in infected cells, and oxidation of mitochondrial NADPH diminished B cell proliferation. Tracing studies underscored contributions of 1C to nucleotide synthesis, NADPH production, and redox defense. EBV upregulated import and synthesis of serine to augment 1C flux. Our results highlight EBV-induced 1C as a potential therapeutic target and provide a new paradigm for viral onco-metabolism.
Medical subject headings
- Aminohydrolases
- B-Lymphocytes
- Cell Transformation, Viral
- Epstein-Barr Virus Infections
- Folic Acid
- Herpesvirus 4, Human
- Methylenetetrahydrofolate Dehydrogenase (NADP)
- Multifunctional Enzymes