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Interactions between genes involved in exocytotic membrane fusion in paramecium

H Bonnemain1, T Gulik-Krzywicki, C Grandchamp

  • 1Centre de Génétique Moléculaire, Centre National de la Recherche Scientifique, France.

Genetics
|March 1, 1992
PubMed

Insights

Researchers identified new genes in Paramecium tetraurelia involved in trichocyst exocytosis. These genes, including nd9, nd16, and nd18, interact to regulate rosette assembly and membrane fusion during exocytosis.

Area of Science:

  • Cell Biology
  • Genetics
  • Molecular Biology

Background:

  • Trichocyst release in Paramecium tetraurelia involves a final membrane fusion step.
  • Mutants (nd) affecting this step were previously identified, defining complementation groups.

Purpose of the Study:

  • To identify genes interacting with nd9, a mutant affecting trichocyst exocytosis and rosette assembly.
  • To further elucidate the molecular mechanisms underlying membrane fusion during exocytosis.

Main Methods:

  • Genetic crosses of Paramecium tetraurelia mutants.
  • Mutagenesis screening for revertants and new mutants.
  • Analysis of double mutants at permissive temperatures.
  • Microinjection experiments to determine protein localization.

Main Results:

  • 13 complementation groups and 23 alleles were defined from initial crosses.
  • Two new mutants, nd16b and nd18, deficient in rosette assembly, were identified.
  • Double mutants (nd9/nd16, nd9/nd18) showed deficiencies in exocytosis and rosette assembly at 18°C.
  • Aberrant dominance relationships suggested interactions between identical subunits.
  • Microinjection indicated nd16 and nd9 gene products are cytosolic factors.

Conclusions:

  • The gene products of nd9, nd16, and nd18 likely cooperate in rosette assembly and membrane fusion during exocytosis.
  • These proteins may form multimeric structures involved in connecting the trichocyst to the plasma membrane.

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