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Updated: Jun 17, 2026

Spatio-Temporal Manipulation of Small GTPase Activity at Subcellular Level and on Timescale of Seconds in Living Cells
Published on: March 9, 2012
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.
Abstract:
Rab-GTPases are key regulators of membrane transport, and growing evidence indicates that their expression levels are altered in certain human malignancies, including cancer. Rab6C, a newly identified Rab6 subfamily member, has attracted recent attention because its reduced expression might confer a selective advantage to drug-resistant breast cancer cells. Here, we report that RAB6C is a primate-specific retrogene derived from a RAB6A' transcript. RAB6C is transcribed in a limited number of human tissues including brain, testis, prostate, and breast. Endogenous Rab6C is considerably less abundant and has a much shorter half-life than Rab6A'. Comparison of the GTP-binding motifs of Rab6C and Rab6A', homology modeling, and GTP-blot overlay assays indicate that amino acid changes in Rab6C have greatly reduced its GTP-binding affinity. Instead, the noncanonical GTP-binding domain of Rab6C mediates localization of the protein to the centrosome. Overexpression of Rab6C results in G1 arrest, and its specific depletion generates tetraploid cells with supernumerary centrosomes, revealing a role of Rab6C in events related to the centrosome and cell cycle progression. Thus, RAB6C is a rare example of a recently emerged retrogene that has acquired the status of a new gene, encoding a functional protein with altered characteristics compared to Rab6A'.
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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