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Mitochondrial Membrane Potential Regulates Nuclear Gene Expression in Macrophages Exposed to Prostaglandin E2

Sanin, David E.; Matsushita, Mai; Klein Geltink, Ramon I.; Grzes, Katarzyna M.; van Teijlingen Bakker, Nikki; Corrado, Mauro; Kabat, Agnieszka M.; Buck, Michael D.; Qiu, Jing; Lawless, Simon J.; Cameron, Alanna M.; Villa, Matteo; Baixauli, Francesc; Patterson, Annette E.; Hässler, Fabian; Curtis, Jonathan D.; O'Neill, Christina M.; O'Sullivan, David; Wu, Duojiao; Mittler, Gerhard; Huang, Stanley Ching-Cheng; Pearce, Erika L.; Pearce, Edward J.

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December 18, 2018

10.1016/j.immuni.2018.10.011

PMID: 30566880

Abstract:

Metabolic engagement is intrinsic to immune cell function. Prostaglandin E2 (PGE2) has been shown to modulate macrophage activation, yet how PGE2 might affect metabolism is unclear. Here, we show that PGE2 caused mitochondrial membrane potential (Δψm) to dissipate in interleukin-4-activated (M(IL-4)) macrophages. Effects on Δψm were a consequence of PGE2-initiated transcriptional regulation of genes, particularly Got1, in the malate-aspartate shuttle (MAS). Reduced Δψm caused alterations in the expression of 126 voltage-regulated genes (VRGs), including those encoding resistin-like molecule α (RELMα), a key marker of M(IL-4) cells, and genes that regulate the cell cycle. The transcription factor ETS variant 1 (ETV1) played a role in the regulation of 38% of the VRGs. These results reveal ETV1 as a Δψm-sensitive transcription factor and Δψm as a mediator of mitochondrial-directed nuclear gene expression.

Automatic Tags

mitochondria; immunometabolism; macrophage; mitochondrial membrane potential; ETS variant 1; ETV1; IL-4; interleukin-4; malate-aspartate shuttle; PGE2; proliferation; prostaglandin E2; RELMα

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