MIC26 and MIC27 cooperate to regulate cardiolipin levels and the landscape of OXPHOS complexes

Author:

Anand Ruchika1ORCID,Kondadi Arun Kumar1ORCID,Meisterknecht Jana234,Golombek Mathias1ORCID,Nortmann Oliver1,Riedel Julia1,Peifer-Weiß Leon1,Brocke-Ahmadinejad Nahal1,Schlütermann David5,Stork Björn5,Eichmann Thomas O67,Wittig Ilka234,Reichert Andreas S1ORCID

Affiliation:

1. Institute of Biochemistry and Molecular Biology I, Heinrich Heine University Düsseldorf, Medical Faculty, Düsseldorf, Germany

2. Functional Proteomics, Sonderforschungsbereich (SFB) 815 Core Unit, Faculty of Medicine, Goethe-University, Frankfurt am Main, Germany

3. Cluster of Excellence “Macromolecular Complexes”, Goethe University, Frankfurt am Main, Germany

4. German Center of Cardiovascular Research (DZHK), Partner Site RheinMain, Frankfurt, Germany

5. Institute of Molecular Medicine I, Heinrich Heine University Düsseldorf, Medical Faculty, Düsseldorf, Germany

6. Center for Explorative Lipidomics, BioTechMed-Graz, Graz, Austria

7. Institute of Molecular Biosciences, University of Graz, Graz, Austria

Abstract

Homologous apolipoproteins of MICOS complex, MIC26 and MIC27, show an antagonistic regulation of their protein levels, making it difficult to deduce their individual functions using a single gene deletion. We obtained single and double knockout (DKO) human cells of MIC26 and MIC27 and found that DKO show more concentric onion-like cristae with loss of CJs than any single deletion indicating overlapping roles in formation of CJs. Using a combination of complexome profiling, STED nanoscopy, and blue-native gel electrophoresis, we found that MIC26 and MIC27 are dispensable for the stability and integration of the remaining MICOS subunits into the complex suggesting that they assemble late into the MICOS complex. MIC26 and MIC27 are cooperatively required for the integrity of respiratory chain (super) complexes (RCs/SC) and the F1Fo–ATP synthase complex and integration of F1 subunits into the monomeric F1Fo–ATP synthase. While cardiolipin was reduced in DKO cells, overexpression of cardiolipin synthase in DKO restores the stability of RCs/SC. Overall, we propose that MIC26 and MIC27 are cooperatively required for global integrity and stability of multimeric OXPHOS complexes by modulating cardiolipin levels.

Funder

Heinrich Heine University Düsseldorf

Deutsche Forschungsgemeinschaft

DFG, German Research Foundation

DFG

Cardio Pulmonary Institute

Bundesministerium für Bildung und Forschung (BMBF) mitoNET

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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