Reduced mitochondrial calcium uptake in macrophages is a major driver of inflammaging.

Seegren, Philip V; Harper, Logan R; Downs, Taylor K; Zhao, Xiao-Yu; Viswanathan, Shivapriya B; Stremska, Marta E; Olson, Rachel J; Kennedy, Joel et al. · Nat Aging · 2023

basic_science · Level V

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Abstract

Mitochondrial dysfunction is linked to age-associated inflammation or inflammaging, but underlying mechanisms are not understood. Analyses of 700 human blood transcriptomes revealed clear signs of age-associated low-grade inflammation. Among changes in mitochondrial components, we found that the expression of mitochondrial calcium uniporter (MCU) and its regulatory subunit MICU1, genes central to mitochondrial Ca<sup>2+</sup> (mCa<sup>2+</sup>) signaling, correlated inversely with age. Indeed, mCa<sup>2+</sup> uptake capacity of mouse macrophages decreased significantly with age. We show that in both human and mouse macrophages, reduced mCa<sup>2+</sup> uptake amplifies cytosolic Ca<sup>2+</sup> oscillations and potentiates downstream nuclear factor kappa B activation, which is central to inflammation. Our findings pinpoint the mitochondrial calcium uniporter complex as a keystone molecular apparatus that links age-related changes in mitochondrial physiology to systemic macrophage-mediated age-associated inflammation. The findings raise the exciting possibility that restoring mCa<sup>2+</sup> uptake capacity in tissue-resident macrophages may decrease inflammaging of specific organs and alleviate age-associated conditions such as neurodegenerative and cardiometabolic diseases.

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