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Inhibition of FOXO3 tumor suppressor function by betaTrCP1 through ubiquitin-mediated degradation in a tumor mouse model. | LitMetric

AI Article Synopsis

  • - The ubiquitin-proteasome system is essential for regulating protein stability, especially for tumor-suppressing proteins like FOXO3, which are important in cancer development.
  • - Research indicates that the betaTrCP1 protein interacts with FOXO3, leading to its degradation and promoting cancer cell survival; silencing betaTrCP1 increases FOXO3 levels, encouraging cell death in cancer cells.
  • - The study reveals that controlling betaTrCP1's effect on FOXO3 stability could be key in cancer prevention and treatment, suggesting potential new approaches for anticancer therapies.

Article Abstract

Background: The ubiquitin-proteasome system is the primary proteolysis machine for controlling protein stability of the majority of regulatory proteins including those that are critical for cancer development. The forkhead box transcription factor FOXO3 plays a key role in regulating tumor suppression; however, the control of FOXO3 protein stability remains to be established. It is crucial to elucidate the molecular mechanisms underlying the ubiquitin-mediated degradation of FOXO3 tumor suppressor.

Methodology And Principal Findings: Here we show that betaTrCP1 oncogenic ubiquitin E3-ligase interacts with FOXO3 and induces its ubiquitin-dependent degradation in an IkappaB kinase-beta phosphorylation dependent manner. Silencing betaTrCP1 augments FOXO3 protein level, resulting in promoting cellular apoptosis in cancer cells. In animal models, increasing FOXO3 protein level by silencing betaTrCP1 suppresses tumorigenesis, whereas decreasing FOXO3 by over-expressing betaTrCP1 promotes tumorigenesis and tumor growth in vivo.

Conclusions/significance: This is a unique demonstration that the betaTrCP1-mediated FOXO3 degradation plays a crucial role in tumorigenesis. These findings significantly contribute to understanding of the control of FOXO3 stability in cancer cells and may provide opportunities for developing innovative anticancer therapeutic modalities.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2896402PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0011171PLOS

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