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- W4311582587 abstract "Multi-organelle spatial proteomics has revolutionized animal cell biology, but its use in protists has so far been limited. A new study delivers the first such proteome of a free-living protist, uncovering a previously overlooked function of highly reduced mitochondria. Multi-organelle spatial proteomics has revolutionized animal cell biology, but its use in protists has so far been limited. A new study delivers the first such proteome of a free-living protist, uncovering a previously overlooked function of highly reduced mitochondria. Reduced mitochondria provide an essential function for the cytosolic methionine cycleZítek et al.Current BiologyNovember 7, 2022In BriefZítek et al. report a spatial-proteomic analysis of the free-living metamonad flagellate P. pyriformis. This approach enables distinguishing proteins localized in its reduced mitochondria with high confidence. Metabolic reconstruction suggests that the sole function of this mitochondrion is to provide substrates for the cytosolic methionine cycle. Full-Text PDF Open Access" @default.
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- W4311582587 date "2022-12-01" @default.
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- W4311582587 title "Eukaryotic evolution: Spatial proteomics sheds light on mitochondrial reduction" @default.
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- W4311582587 doi "https://doi.org/10.1016/j.cub.2022.10.039" @default.
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