Division of Biology, Kansas State University, Manhattan, Kansas, United States of America.
PLoS Pathog. 2021 Feb 2;17(2):e1009303. doi: 10.1371/journal.ppat.1009303. eCollection 2021 Feb.
Metabolism is a crucial frontier of host-virus interaction as viruses rely on their host cells to provide nutrients and energy for propagation. Vaccinia virus (VACV) is the prototype poxvirus. It makes intensive demands for energy and macromolecules in order to build hundreds and thousands of viral particles in a single cell within hours of infection. Our comprehensive metabolic profiling reveals profound reprogramming of cellular metabolism by VACV infection, including increased levels of the intermediates of the tri-carboxylic acid (TCA) cycle independent of glutaminolysis. By investigating the level of citrate, the first metabolite of the TCA cycle, we demonstrate that the elevation of citrate depends on VACV-encoded viral growth factor (VGF), a viral homolog of cellular epidermal growth factor. Further, the upregulation of citrate is dependent on STAT3 signaling, which is activated non-canonically at the serine727 upon VACV infection. The STAT3 activation is dependent on VGF, and VGF-dependent EGFR and MAPK signaling. Together, our study reveals a novel mechanism by which VACV manipulates cellular metabolism through a specific viral factor and by selectively activating a series of cellular signaling pathways.
代谢是宿主-病毒相互作用的一个关键领域,因为病毒依赖其宿主细胞为增殖提供营养和能量。牛痘病毒(VACV)是正痘病毒的原型。它为了在感染后的数小时内在单个细胞内构建成百上千的病毒颗粒,对能量和生物大分子有强烈的需求。我们全面的代谢谱分析揭示了 VACV 感染对细胞代谢的深刻重编程,包括三羧酸(TCA)循环中间产物的水平增加,而不依赖于谷氨酰胺分解。通过研究 TCA 循环的第一个代谢产物柠檬酸的水平,我们证明柠檬酸的升高取决于 VACV 编码的病毒生长因子(VGF),这是细胞表皮生长因子的病毒同源物。此外,柠檬酸的上调依赖于 STAT3 信号转导,该信号在 VACV 感染时非经典地在丝氨酸 727 处被激活。STAT3 的激活依赖于 VGF,以及 VGF 依赖性的 EGFR 和 MAPK 信号转导。总之,我们的研究揭示了一种新的机制,即 VACV 通过一种特定的病毒因子和选择性地激活一系列细胞信号通路来操纵细胞代谢。