Mitochondrial translocation of TFEB regulates complex I and inflammation

TFEB 的线粒体转位调节复合物 I 和炎症

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作者:Chiara Calabrese ,Hendrik Nolte ,Melissa R Pitman ,Raja Ganesan ,Philipp Lampe ,Raymond Laboy ,Roberto Ripa ,Julia Fischer ,Ruhi Polara ,Sameer Kumar Panda ,Sandhya Chipurupalli ,Saray Gutierrez ,Daniel Thomas ,Stuart M Pitson ,Adam Antebi ,Nirmal Robinson

Abstract

TFEB is a master regulator of autophagy, lysosome biogenesis, mitochondrial metabolism, and immunity that works primarily through transcription controlled by cytosol-to-nuclear translocation. Emerging data indicate additional regulatory interactions at the surface of organelles such as lysosomes. Here we show that TFEB has a non-transcriptional role in mitochondria, regulating the electron transport chain complex I to down-modulate inflammation. Proteomics analysis reveals extensive TFEB co-immunoprecipitation with several mitochondrial proteins, whose interactions are disrupted upon infection with S. Typhimurium. High resolution confocal microscopy and biochemistry confirms TFEB localization in the mitochondrial matrix. TFEB translocation depends on a conserved N-terminal TOMM20-binding motif and is enhanced by mTOR inhibition. Within the mitochondria, TFEB and protease LONP1 antagonistically co-regulate complex I, reactive oxygen species and the inflammatory response. Consequently, during infection, lack of TFEB specifically in the mitochondria exacerbates the expression of pro-inflammatory cytokines, contributing to innate immune pathogenesis. Keywords: LONP1; Metabolism; Mitochondria; Salmonella; TFEB.

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