Mitofusin 2 displays fusion-independent roles in proteostasis surveillance
Abstract
Abstract Mitochondria are essential organelles and their functional state dictates cellular proteostasis. However, little is known about the molecular gatekeepers involved, especially in absence of external stress. Here we identify a role of MFN2 in quality control independent of its function in organellar shape remodeling. MFN2 ablation alters the cellular proteome, marked for example by decreased levels of the import machinery and accumulation of the kinase PINK1. Moreover, MFN2 interacts with the proteasome and cytosolic chaperones, thereby preventing aggregation of newly translated proteins. Similarly to MFN2-KO cells, patient fibroblasts with MFN2-disease variants recapitulate excessive protein aggregation defects. Restoring MFN2 levels re-establishes proteostasis in MFN2-KO cells and rescues fusion defects of MFN1-KO cells. In contrast, MFN1 loss or mitochondrial shape alterations do not alter protein aggregation, consistent with a fusion-independent role of MFN2 in cellular homeostasis. In sum, our findings open new possibilities for therapeutic strategies by modulation of MFN2 levels.
Article Details
Authors (19)
Mariana Joaquim
Selver Altin
Maria-Bianca Bulimaga
Tânia Simões
Hendrik Nolte
Verian Bader
Department Molecular Cell Biology, Institute of Biochemistry and Pathobiochemistry, Ruhr University Bochum
Camilla Aurora Franchino
Solenn Plouzennec
Karolina Szczepanowska
Elena Marchesan
Kay Hofmann
Marcus Krüger
Elena Ziviani
Aleksandra Trifunovic
Arnaud Chevrollier
Konstanze F. Winklhofer
Department Molecular Cell Biology, Institute of Biochemistry and Pathobiochemistry, Ruhr University Bochum
Elisa Motori
Margarete Odenthal
Mafalda Escobar-Henriques