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ARF is required for maintenance of yeast Golgi and endosome structure and function

E C Gaynor1, C Y Chen, S D Emr

  • 1Department of Biology, Division of Cellular and Molecular Medicine, and the Howard Hughes Medical Institute, University of California, San Diego La Jolla, California 92093-0668, USA.

Insights

ADP ribosylation factor (ARF) regulates Golgi membrane dynamics, impacting both COPI-dependent and independent transport. ARF mutants show significant organelle morphology defects, suggesting a fundamental role in membrane dynamics beyond vesicle budding.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Membrane Trafficking

Background:

  • ADP ribosylation factor (ARF) is implicated in coatomer protein (COPI) recruitment to Golgi membranes, essential for vesicle budding.
  • Mutant COPI proteins cause defects in retrograde and anterograde protein transport within the Golgi and ER.
  • The precise role of ARF in protein transport and organelle morphology remains incompletely understood.

Purpose of the Study:

  • To investigate the role of ARF in protein transport kinetics and organelle morphology in yeast.
  • To determine if ARF mutants exhibit phenotypes similar to COPI mutants.
  • To elucidate the fundamental role of ARF in regulating membrane dynamics.

Main Methods:

  • Analysis of anterograde transport kinetics of cargo proteins in ARF mutant yeast.
  • Examination of retrograde dilysine-mediated transport in ARF mutants.
  • Fluorescence microscopy using FM4-64 and Golgi glycosyltransferases.
  • Electron microscopy of ARF mutant cells.

Main Results:

  • ARF mutants displayed comparable defects in both COPI-dependent and COPI-independent cargo transport.
  • Retrograde transport was inefficient in ARF mutants.
  • Abnormally large, ring-shaped structures were observed, containing Golgi glycosyltransferases and endocytic markers.
  • Electron microscopy revealed hollow spheres of interconnected membrane tubules in ARF mutants.

Conclusions:

  • ARF plays a critical role in regulating intracellular organelle morphology, with effects more pronounced than on transport.
  • ARF is fundamental in controlling membrane dynamics, potentially influencing organelle structure beyond coat assembly.
  • The observed morphological changes suggest a broader function for ARF in maintaining cellular organization.

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