Solution structure of the Hdm2 C2H2C4 RING, a domain critical for ubiquitination of p53

Milka Kostic1, Theresia Matt, Maria A Martinez-Yamout

  • 1Department of Molecular Biology and Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.

Journal of Molecular Biology
|September 13, 2006
PubMed

Insights

The study reveals the structure of the Hdm2 RING domain, showing it forms a dimer with a unique zinc-binding scheme. This structure explains how Hdm2 and HdmX interact to regulate tumor suppressor p53 stability.

Area of Science:

  • Biochemistry
  • Structural Biology
  • Molecular Oncology

Background:

  • The tumor suppressor p53's function is tightly regulated at multiple cellular levels.
  • Hdm2, an E3 ubiquitin ligase, controls p53 stability by promoting its ubiquitination and degradation.
  • The C-terminal RING domain of Hdm2 is crucial for its E3 ligase activity but has atypical zinc coordination.

Purpose of the Study:

  • To determine the solution structure of the Hdm2 C2H2C4 RING domain.
  • To investigate the heterodimerization of Hdm2 and HdmX RING domains and its functional implications.

Main Methods:

  • Solution NMR spectroscopy was used to determine the structure of the Hdm2 RING domain.
  • NMR titration was employed to study the interaction between Hdm2 and HdmX RING domains.

Main Results:

  • The Hdm2 RING domain forms a symmetrical dimer with a novel cross-brace zinc-binding motif (Cys4 and His2Cys2 sites per subunit).
  • The Hdm2 and HdmX RING domains form a stable 1:1 heterodimer.
  • The heterodimerization interface is distinct from the E2 ubiquitin-conjugating enzyme binding site, suggesting a regulatory mechanism.

Conclusions:

  • The determined structure provides a molecular basis for Hdm2 RING domain function and dimerization.
  • Hdm2-HdmX heterodimerization likely modulates E3 ligase activity towards p53.
  • This structural insight is critical for understanding p53 regulation and developing targeted cancer therapies.

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