Mitochondrial complex I activity in microglia sustains neuroinflammation.

Peruzzotti-Jametti, L; Willis, C M; Krzak, G; Hamel, R; Pirvan, L; Ionescu, R-B; Reisz, J A; Prag, H A et al. · Nature · 2024

basic_science · Level V

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Abstract

Sustained smouldering, or low-grade activation, of myeloid cells is a common hallmark of several chronic neurological diseases, including multiple sclerosis<sup>1</sup>. Distinct metabolic and mitochondrial features guide the activation and the diverse functional states of myeloid cells<sup>2</sup>. However, how these metabolic features act to perpetuate inflammation of the central nervous system is unclear. Here, using a multiomics approach, we identify a molecular signature that sustains the activation of microglia through mitochondrial complex I activity driving reverse electron transport and the production of reactive oxygen species. Mechanistically, blocking complex I in pro-inflammatory microglia protects the central nervous system against neurotoxic damage and improves functional outcomes in an animal disease model in vivo. Complex I activity in microglia is a potential therapeutic target to foster neuroprotection in chronic inflammatory disorders of the central nervous system<sup>3</sup>.

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