RAB6C is a retrogene that encodes a centrosomal protein involved in cell cycle progression

Joanne Young1, Julie Ménétrey, Bruno Goud

  • 1Molecular Mechanisms of Intracellular Transport, CNRS, UMR144, Institut Curie, 26 rue d'Ulm, 75248 Paris Cedex 05, France.

Insights

Newly identified Rab6C, a primate-specific retrogene, functions at the centrosome. Its altered GTP-binding impacts cell cycle progression, causing G1 arrest or tetraploidy with supernumerary centrosomes.

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Genetics

Background:

  • Rab-GTPases regulate membrane transport and are implicated in cancer.
  • Reduced Rab6C expression may confer drug resistance in breast cancer cells.

Purpose of the Study:

  • To investigate the origin, function, and characteristics of the primate-specific retrogene RAB6C.
  • To elucidate Rab6C's role in cell cycle regulation and centrosome dynamics.

Main Methods:

  • Retrogene analysis and gene transcription profiling.
  • Homology modeling and GTP-binding assays.
  • Cellular localization studies and cell cycle analysis upon Rab6C manipulation.

Main Results:

  • RAB6C is a primate-specific retrogene with limited tissue transcription.
  • Rab6C exhibits reduced GTP-binding affinity and localizes to the centrosome.
  • Rab6C overexpression causes G1 arrest; its depletion leads to tetraploid cells with supernumerary centrosomes.

Conclusions:

  • Rab6C is a functional retrogene with altered characteristics compared to Rab6A'.
  • Rab6C plays a novel role in centrosome regulation and cell cycle progression.
  • Rab6C represents a rare example of a retrogene acquiring new gene status and function.

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