A priority code in presequences: mitochondrial targeting signals assign specific import characteristics to precursor proteins
Roedl, S.; Hoffman, Y.; Jung, F.; Nutz, A.; Egeler, A.; Raeschle, M.; Storchova, Z.; Muehlhaus, T.; Herrmann, J. M.
Show abstract
The biogenesis of mitochondria relies on the import of hundreds of different precursor proteins from the cytosol. Most of these proteins are synthesized with N-terminal presequences which serve as mitochondrial targeting signals. Presequences consistently form amphipathic helices, but they considerably differ in respect to their primary structure and length. Here we show that presequences can be classified into seven different groups based on their specific features. Using a test set of different presequences, we observed that group A presequences endow precursor proteins with improved in vitro import characteristics. We developed IQ-Compete (for Import and de-Quenching Competition assay), a novel assay based on fluorescence de-quenching, to monitor the import efficiencies of mitochondrial precursors in vivo. With this assay, we confirmed the increased import competence of group A presequences. Using mass spectrometry, we found that the presequence of the group A protein Oxa1 specifically recruits the tetratricopeptide repeat (TPR) containing protein TOMM34 to the cytosolic precursor protein. TOMM34 apparently serves as a presequence-specific targeting factor which increases the import efficiency of a specific subset of mitochondrial precursor proteins. Our results suggest that presequences contain a protein-specific priority code that encrypts the targeting mechanism of individual mitochondrial precursor proteins.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- YBEY is an essential biogenesis factor for mitochondrial ribosomes 97%
- Not4-dependent targeting of MMF1 mRNA to mitochondria limits its expression via ribosome pausing, Egd1 ubiquitination, Caf130, No-Go-Decay and autophagy 97%
- BOLA3 and NFU1 link mitoribosome iron-sulfur cluster assembly to multiple mitochondrial dysfunctions syndrome 97%
Similar papers in this journal
Similar papers in this journal
- Molecular characterization of Rft1, an ER membrane protein associated with congenital disorder of glycosylation RFT1-CDG 96%
- Quantitative proteomics identifies the universally conserved ATPase Ola1p as a positive regulator of heat shock response in Saccharomyces cerevisiae 96%
- A genome wide copper-sensitized screen identifies novel regulators of mitochondrial cytochrome c oxidase activity 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.