Endogenous human MDM2-C is highly expressed in human cancers and functions as a p53-independent growth activator

Danielle R Okoro1, Nicoleta Arva, Chong Gao

  • 1Department of Biological Sciences Hunter College and The Graduate Center Departments of Biology and Biochemistry, City University of New York, New York City, United States of America.

Plos One
|October 23, 2013
PubMed

Insights

This study identifies the previously undetected MDM2-C protein isoform in human cancers. MDM2-C promotes cancer cell proliferation and survival independently of p53 inhibition.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Human cancers often overexpress MDM2, leading to p53 inactivation.
  • Alternatively spliced MDM2 transcripts, including MDM2-C, are found in cancers, but endogenous MDM2 protein isoforms have not been detected.
  • Previous studies explored MDM2-A and MDM2-B splice variants, leaving MDM2-C largely unexamined.

Purpose of the Study:

  • To investigate the cellular influence of exogenously expressed MDM2-C.
  • To determine if endogenous MDM2-C protein is present in human cancers.
  • To explore the role of MDM2-C in cancer cell proliferation and survival.

Main Methods:

  • Developed and validated a specific antibody (MDM2 C410) to detect endogenous MDM2-C.
  • Utilized in vitro translation to compare MDM2-FL and MDM2-C.
  • Analyzed MDM2-C expression in human cancer cell lines and tissues.
  • Examined MDM2-C localization and biological activity through exogenous expression experiments.

Main Results:

  • Detected high expression of endogenous MDM2-C protein in human cancer cell lines and tissues.
  • Observed increased endogenous MDM2-C with estrogen treatment in ER+ breast cancer cells (T47D).
  • Found that exogenous MDM2-C did not efficiently target p53 for degradation or inhibit p53 activity.
  • Demonstrated that exogenous MDM2-C increased colony formation in p53-null cells, suggesting p53-independent tumorigenic properties.

Conclusions:

  • MDM2-C is an endogenous protein isoform present in human cancers.
  • MDM2-C contributes to cancer cell proliferation and survival through p53-independent mechanisms.
  • Further research into MDM2-C's role in tumorigenesis is warranted.

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