Cbp3–Cbp6 interacts with the yeast mitochondrial ribosomal tunnel exit and promotes cytochrome b synthesis and assembly

Author:

Gruschke Steffi12,Kehrein Kirsten12,Römpler Katharina1,Gröne Kerstin1,Israel Lars3,Imhof Axel3,Herrmann Johannes M.1,Ott Martin12

Affiliation:

1. Abteilung Membranbiogenese and Abteilung Zellbiologie, Technische Universität Kaiserslautern, 67663 Kaiserslautern, Germany

2. Department of Biochemistry and Biophysics, Center for Biomembrane Research, University of Stockholm, SE-106 91 Stockholm, Sweden

3. Zentrallabor für Proteinanalytik, Adolf-Butenandt-Institut, Ludwig-Maximilians-Universität München, 80336 München, Germany

Abstract

Mitochondria contain their own genetic system to express a small number of hydrophobic polypeptides, including cytochrome b, an essential subunit of the bc1 complex of the respiratory chain. In this paper, we show in yeast that Cbp3, a bc1 complex assembly factor, and Cbp6, a regulator of cytochrome b translation, form a complex that associates with the polypeptide tunnel exit of mitochondrial ribosomes and that exhibits two important functions in the biogenesis of cytochrome b. On the one hand, the interaction of Cbp3 and Cbp6 with mitochondrial ribosomes is necessary for efficient translation of cytochrome b transcript. On the other hand, the Cbp3–Cbp6 complex interacts directly with newly synthesized cytochrome b in an assembly intermediate that is not ribosome bound and that contains the assembly factor Cbp4. Our results suggest that synthesis of cytochrome b occurs preferentially on those ribosomes that have the Cbp3–Cbp6 complex bound to their tunnel exit, an arrangement that may ensure tight coordination of cytochrome b synthesis and assembly.

Publisher

Rockefeller University Press

Subject

Cell Biology

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