Regulation of APC/CCdc20 activity by RASSF1A-APC/CCdc20 circuitry

C Chow1, N Wong, M Pagano

  • 1Department of Anatomical and Cellular Pathology, State Key Laboratory in Oncology in South China, Prince of Wales Hospital, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, China.

Oncogene
|August 30, 2011
PubMed

Insights

The tumor suppressor RASSF1A regulates mitosis by inhibiting APC/C(Cdc20). Phosphorylation by Aurora kinases switches RASSF1A to a substrate, enabling cell cycle progression.

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Cancer Research

Background:

  • RASSF1A is a tumor suppressor gene frequently inactivated in solid tumors.
  • RASSF1A is crucial for cell-cycle regulation and mitosis, but its precise mechanism is unclear.
  • APC/C(Cdc20) is a key regulator of mitosis, controlling the ubiquitination of downstream targets.

Purpose of the Study:

  • To elucidate the novel regulatory circuitry controlling APC/C(Cdc20) activity during mitosis.
  • To investigate the interaction between RASSF1A and APC/C(Cdc20) and its role in mitotic progression.

Main Methods:

  • Investigated RASSF1A and APC/C(Cdc20) interaction using in vitro ubiquitination assays.
  • Analyzed RASSF1A phosphorylation by Aurora A and Aurora B kinases.
  • Examined the role of RASSF1A D-box motifs in APC/C(Cdc20) recognition.

Main Results:

  • RASSF1A inhibits APC/C(Cdc20) activity via its N-terminal D-boxes.
  • Aurora A and B phosphorylation converts RASSF1A from an inhibitor to a substrate of APC/C(Cdc20).
  • This phosphorylation-dependent switch facilitates timely Cyclin A degradation, essential for mitosis.

Conclusions:

  • A novel molecular relay between RASSF1A and APC/C(Cdc20) regulates mitotic progression.
  • RASSF1A degradation, triggered by Aurora kinases, is critical for APC/C(Cdc20) function.
  • This circuitry ensures the sequential degradation of mitotic proteins and timely cell cycle progression.

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