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Updated: Jul 2, 2025

Author Spotlight: Decoding Mitochondrial Aging
Published on: June 30, 2023
Recurrent evolutionary switches of mitochondrial cytochrome c maturation systems in Archaeplastida
Huang Li1, Soujanya Akella1,2, Carina Engstler3
1Center for Plant Science Innovation, University of Nebraska-Lincoln, Lincoln, NE, 68588, USA.
Abstract:
Mitochondrial cytochrome c maturation (CCM) requires heme attachment via distinct pathways termed systems I and III. The mosaic distribution of these systems in Archaeplastida raises questions about the genetic mechanisms and evolutionary forces promoting repeated evolution. Here, we show a recurrent shift from ancestral system I to the eukaryotic-specific holocytochrome c synthase (HCCS) of system III in 11 archaeplastid lineages. Archaeplastid HCCS is sufficient to rescue mutants of yeast system III and Arabidopsis system I. Algal HCCS mutants exhibit impaired growth and respiration, and altered biochemical and metabolic profiles, likely resulting from deficient CCM and reduced cytochrome c-dependent respiratory activity. Our findings demonstrate that archaeplastid HCCS homologs function as system III components in the absence of system I. These results elucidate the evolutionary trajectory and functional divergence of CCM pathways in Archaeplastida, providing insight into the causes, mechanisms, and consequences of repeated cooption of an entire biological pathway.
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