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Publication : Mitochondrial Ca<sup>2+</sup> Signaling Is an Electrometabolic Switch to Fuel Phagosome Killing.

First Author  Seegren PV Year  2020
Journal  Cell Rep Volume  33
Issue  8 Pages  108411
PubMed ID  33238121 Mgi Jnum  J:300795
Mgi Id  MGI:6488943 Doi  10.1016/j.celrep.2020.108411
Citation  Seegren PV, et al. (2020) Mitochondrial Ca(2+) Signaling Is an Electrometabolic Switch to Fuel Phagosome Killing. Cell Rep 33(8):108411
abstractText  Phagocytes reallocate metabolic resources to kill engulfed pathogens, but the intracellular signals that rapidly switch the immunometabolic program necessary to fuel microbial killing are not understood. We report that macrophages use a fast two-step Ca(2+) relay to meet the bioenergetic demands of phagosomal killing. Upon detection of a fungal pathogen, macrophages rapidly elevate cytosolic Ca(2+) (phase 1), and by concurrently activating the mitochondrial Ca(2+) (mCa(2+)) uniporter (MCU), they trigger a rapid influx of Ca(2+) into the mitochondria (phase 2). mCa(2+) signaling reprograms mitochondrial metabolism, at least in part, through the activation of pyruvate dehydrogenase (PDH). Deprived of mCa(2+) signaling, Mcu(-/-) macrophages are deficient in phagosomal reactive oxygen species (ROS) production and defective at killing fungi. Mice lacking MCU in their myeloid cells are highly susceptible to disseminated candidiasis. In essence, this study reveals an elegant design principle that MCU-dependent Ca(2+) signaling is an electrometabolic switch to fuel phagosome killing.
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