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Biology subjects

Göktas, G.

Publications and source records attributed to Göktas, G..

2 recordsLinked to original sources

Presequences of non-imported mitochondrial proteins serve as quality control elements in the cytosol

Most mitochondrial proteins are synthesized in the cytosol as precursor proteins with presequences which serve as targeting signals for the mitochondrial matrix, where they are cleaved by the mitochondrial processing peptidase (MPP). In this study, we comprehensively elucidated the role of the presequence and the mature part of mitochondrial precursors in the cytosol, by use of a cytosol-targeted MPP which prematurely processed mitochondrial precursors. Over time, cytoMPP resulted in mitochondrial depletion. However, the cellular response to cytoMPP was surprisingly different to that observed for other models of mitochondrial import inhibition. Cytosolic maturation rendered many proteins stable in the cytosol, indicating that their mature parts lack ubiquitination signals. Accordingly, cytoMPP did not induce the upregulation of the proteasome, which normally is a hallmark of mitochondrial dysfunction. Instead, cytoMPP elicited a heat shock response and impaired the sequestration of precursors in the cytosol. Our observations demonstrate that mitochondrial presequences are more than just address labels. Rather, they play an important role in quality control and orchestrate the cellular response to defects in mitochondrial protein import.

biochemistry↗

The ribosome-associated quality control factor Vms1 protects mitochondrial import and homeostasis during translation stress

Mitochondrial protein synthesis and import are tightly coordinated to maintain cellular proteostasis, yet how cytosolic translation stress affects mitochondrial homeostasis remains poorly understood. Here, we investigated the cellular consequences of general translation stress using low-dose translation inhibitors in Saccharomyces cerevisiae. Genome-wide phenotypic screening revealed that the deletion of tRNA-hydrolase VMS1 involved in mitochondria-associated ribosomal quality control (mitoRQC) causes a unique hypersensitivity to low-dose cycloheximide. Quantitative proteomics demonstrated that translation stress triggers specific depletion of mitochondrial proteins, reduced respiratory capacity, and impaired mitochondrial membrane potential. Most notably, cytosolic translation stress strongly inhibited mitochondrial protein import, an effect that was substantially exacerbated in vms1{Delta} cells. We further identify the mitochondrial AAA-ATPase Msp1 as a protective factor during translation stress. Msp1 expression increased in vms1{Delta} cells, and its overexpression restored growth under stress, linking co-translational quality control to mitochondrial protein import surveillance. Together, our findings reveal mitochondrial protein import as a major target of cytosolic translation stress and uncover functional cooperation between mitoRQC and Msp1 in safeguarding mitochondrial proteostasis and cell survival.

cell biology↗