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Full-length prepro-alpha-factor can be translocated across the mammalian microsomal membrane only if translation has

P D Garcia1, P Walter

  • 1Department of Biochemistry and Biophysics, University of California Medical School, San Francisco 94143-0448.

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.

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