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Epstein-Barr-Virus-Induced One-Carbon Metabolism Drives B Cell Transformation

Cell Metab.. 2019-06; 
Wang LW, Shen H, Nobre L, Ersing I, Paulo JA, Trudeau S, Wang Z, Smith NA, Ma Y, Reinstadler B, Nomburg J, Sommermann T, Cahir-McFarland E, Gygi SP, Mootha VK, Weekes MP, Gewurz BE.
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Gene Synthesis The MTHFD2R cDNA rescue construct utilizes the pLX_TRC313 (HygR) vector backbone and was synthesized and sequence-validated by GenScript. Recombinant DNA(pLX_TRC313-MTHFD2R) was from GenScript. Get A Quote

摘要

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 oxidat... More

关键词

B-cell activation; de novo serine synthesis; folate; isotope tracing; metabolic remodeling; mitochondrial one-carbon metabolism; quantitative proteomics; tandem mass tag; tumor virus; virus oncoprotein