Related Experiment Videos
Puromycin inhibits protein import into mitochondria by interfering with an intramitochondrial ATP-dependent reaction
1Department of Cellular and Molecular Physiology, Pennsylvania State University College of Medicine, Hershey 17033.
Abstract:
We have performed experiments which demonstrate that puromycin inhibits the import of proteins into mitochondria in in vitro reactions containing mitochondria isolated from the yeast Saccharomyces cerevisiae and precursor proteins synthesized in a nuclease-treated rabbit reticulocyte lysate. Puromycin inhibited the import of several precursor proteins including; a fusion protein consisting of the first 22 N-terminal residues of yeast cytochrome oxidase subunit IV fused to mouse dihydrofolate reductase, both a destabilized and truncated form of this same fusion protein, the beta-subunit of the yeast mitochondrial F1-ATPase and yeast alcohol dehydrogenase III. The insertion of the yeast outer mitochondrial protein porin was not inhibited by puromycin. Puromycin-induced import inhibition could be overcome by adding additional ATP to the import reactions. However, if access of ATP to the mitochondrial matrix was prevented by blocking the adenine nucleotide translocase with carboxyatractyloside, ATP addition was unable to overcome the inhibitory effect of puromycin on protein import. Collectively, these results demonstrate that puromycin inhibits protein import into mitochondria by interfering with an ATP-dependent step in the import process and that the ATP-dependent component in the reaction is located inside the inner mitochondrial membrane. In addition to supporting the view that ATP is required in the matrix for efficient protein import, these results may provide a useful tool for identifying the ATP-binding components of the import apparatus.
Insights
Puromycin inhibits mitochondrial protein import by blocking an ATP-dependent step within the inner mitochondrial membrane. This inhibition can be reversed by ATP, highlighting ATP
Area of Science:
- Mitochondrial biology
- Molecular cell biology
- Protein import
Background:
- Mitochondria are vital organelles requiring precise protein import.
- The import process is complex and energy-dependent.
- Understanding the specific energy requirements is crucial for elucidating mitochondrial function.
Purpose of the Study:
- To investigate the mechanism by which puromycin affects protein import into mitochondria.
- To determine the role of ATP and its location in the puromycin-induced inhibition of protein import.
Main Methods:
- In vitro import assays using isolated yeast mitochondria and reticulocyte lysate-synthesized precursor proteins.
- Testing the effect of puromycin on the import of various precursor proteins, including fusion proteins and native mitochondrial proteins.
- Investigating the role of ATP and the adenine nucleotide translocase (ANT) in overcoming puromycin-induced inhibition.
Main Results:
- Puromycin significantly inhibited the import of several mitochondrial precursor proteins, but not the outer membrane protein porin.
- The inhibitory effect of puromycin was overcome by the addition of ATP.
- Blocking the adenine nucleotide translocase with carboxyatractyloside prevented ATP from reversing the puromycin-induced inhibition.
Conclusions:
- Puromycin inhibits mitochondrial protein import by interfering with an ATP-dependent step.
- The ATP-dependent step targeted by puromycin is located inside the inner mitochondrial membrane.
- These findings support the requirement of matrix ATP for efficient protein import and offer a tool to study the import apparatus.