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Full-length prepro-alpha-factor can be translocated across the mammalian microsomal membrane only if translation has
1Department of Biochemistry and Biophysics, University of California Medical School, San Francisco 94143-0448.
Abstract:
We have previously shown that fully synthesized prepro-alpha-factor (pp alpha F), the precursor for the yeast pheromone alpha-factor, can be translocated posttranslationally across yeast rough microsomal (RM) membranes from a soluble, ribosome-free pool. We show here that this is not the case for translocation of pp alpha F across mammalian RM. Rather we found that a small amount of translocation of full-length pp alpha F is observed, but is solely due to polypeptide chains that were still ribosome bound and covalently attached to tRNA, i.e., not terminated. In addition, both signal recognition particle (SRP) and SRP receptor are required, i.e., the same targeting machinery that is normally responsible for the coupling between protein synthesis and translocation. Thus, the molecular requirements for targeting are distinct from posttranslational translocation across yeast RM. As termination is generally regarded as part of translation, the translocation of full-length pp alpha F across mammalian RM does not occur "posttranslationally," albeit independent of elongation. Most other proteins for which posttranslational translocation across mammalian RM was previously claimed fall into the same category in that ribosome attachment as peptidyl-tRNA is required. To clearly separate these two distinct processes, we suggest that the term posttranslational be reserved for those processes that occur in the complete absence of the translational machinery. We propose the term "ribosome-coupled translocation" for the events described here.
Insights
Mammalian cells do not translocate prepro-alpha-factor posttranslationally. Instead, ribosome-coupled translocation requires signal recognition particle (SRP) and SRP receptor machinery.
Area of Science:
- Molecular Biology
- Cell Biology
- Protein Translocation
Background:
- Previously demonstrated posttranslational translocation of yeast prepro-alpha-factor (pp alpha F) across yeast rough microsomal (RM) membranes.
- Established pp alpha F as a precursor for yeast pheromone alpha-factor.
Purpose of the Study:
- To investigate the translocation mechanism of pp alpha F across mammalian RM.
- To determine if pp alpha F translocation in mammalian cells occurs posttranslationally.
- To clarify the molecular requirements for pp alpha F targeting in mammalian systems.
Main Methods:
- Investigated translocation of full-length pp alpha F across mammalian RM.
- Assessed the role of ribosome binding and tRNA attachment in translocation.
- Examined the requirement for signal recognition particle (SRP) and SRP receptor.
Main Results:
- Translocation of full-length pp alpha F across mammalian RM is minimal and requires ribosome attachment (peptidyl-tRNA).
- Signal recognition particle (SRP) and SRP receptor are necessary for this translocation.
- This process differs from posttranslational translocation observed in yeast RM.
Conclusions:
- Translocation of pp alpha F across mammalian RM is not posttranslational but rather ribosome-coupled.
- The term 'posttranslational translocation' should be reserved for processes independent of the translational machinery.
- Proposed 'ribosome-coupled translocation' as a distinct mechanism for proteins targeted to mammalian RM.