Abstract

The mitochondrial electron transport chain consists of individual protein complexes arranged into large macromolecular structures, termed respiratory chain supercomplexes or respirasomes. In the yeast Saccharomyces cerevisiae, respiratory chain supercomplexes form by association of the bc1 complex with the cytochrome c oxidase. Formation and maintenance of these assemblies are promoted by specific respiratory supercomplex factors, the Rcf proteins. For these proteins a regulatory function in bridging the electron transfer within supercomplexes has been proposed. Here we report on the maturation of Rcf2 into an N- and C-terminal peptide. We show that the previously uncharacterized Rcf3 (YBR255c-A) is a homolog of the N-terminal Rcf2 peptide, whereas Rcf1 is homologous to the C-terminal portion. Both Rcf3 and the C-terminal fragment of Rcf2 associate with monomeric cytochrome c oxidase and respiratory chain supercomplexes. A lack of Rcf2 and Rcf3 increases oxygen flux through the respiratory chain by up-regulation of the cytochrome c oxidase activity. A double gene deletion of RCF2 and RCF3 affects cellular survival under non-fermentable growth conditions, suggesting an overlapping role for both proteins in the regulation of the OXPHOS activity. Furthermore, our data suggest an association of all three Rcf proteins with the bc1 complex in the absence of a functional cytochrome c oxidase and identify a supercomplex independent interaction network of the Rcf proteins.

Highlights

  • The mitochondrial electron transport chain consists of individual protein complexes arranged into large macromolecular structures, termed respiratory chain supercomplexes or respirasomes

  • The mitochondrial respiratory chain is further formed by multiprotein containing enzymes like the succinate dehydrogenase, the ubiquinolcytochrome c oxidoreductase, and the cytochrome c oxidase [2,3,4]

  • Respiratory chain supercomplexes assemble from individual complexes

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Summary

Edited by Linda Spremulli

The mitochondrial electron transport chain consists of individual protein complexes arranged into large macromolecular structures, termed respiratory chain supercomplexes or respirasomes. Our data suggest an association of all three Rcf proteins with the bc complex in the absence of a functional cytochrome c oxidase and identify a supercomplex independent interaction network of the Rcf proteins. Eukaryotic cells cover their energy demands mainly with ATP generated by oxidative phosphorylation in mitochondria. The mitochondrial respiratory chain is further formed by multiprotein containing enzymes like the succinate dehydrogenase (complex II), the ubiquinolcytochrome c oxidoreductase (complex III), and the cytochrome c oxidase (complex IV) [2,3,4] The latter two complexes are composed of proteins with dual genetic origin.

Respiratory Supercomplex Factors
Results and Discussion
Yeast strains used in this study
Experimental Procedures
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