RNF214 silencing attenuates prostate cancer progression and modulates mTOR signaling through CAV1 ubiquitination

Zongqiang Wu1, Zhiming Huang1, Shangfan Liao2

  • 1Department of Urology, Sanming First Hospital Affiliated to Fujian Medical University, No. 29, Lidong Street, Sanyuan District, Sanming City, Fujian Province, China.

Cell & Bioscience
|June 9, 2026
PubMed
Abstract

Insights

RNF214 promotes prostate cancer by degrading CAV1 via ubiquitination, activating mTOR signaling. Targeting the RNF214-CAV1 axis may offer new prostate cancer therapies.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • RNF214 and CAV1 are known to influence tumor progression and signaling.
  • The specific role of the RNF214-CAV1 interaction in prostate cancer (PCa) is not well understood.
  • This study investigates the RNF214-CAV1 axis in PCa development and mTOR signaling.

Purpose of the Study:

  • To elucidate the mechanism by which RNF214 affects CAV1 stability through ubiquitination.
  • To determine the impact of the RNF214-CAV1 axis on prostate cancer progression.
  • To explore the relationship between RNF214, CAV1, and the mTOR signaling pathway in PCa.

Main Methods:

  • Assessed RNF214 expression and function in clinical PCa tissues, cell lines, and xenograft models.
  • Utilized gene silencing, GST pull-down, and co-immunoprecipitation to study protein interactions and ubiquitination.
  • Examined proliferation, migration, and signaling pathway markers (e.g., Ki67, PTEN, mTOR components) using in vitro and in vivo techniques.

Main Results:

  • RNF214 expression was elevated, while CAV1 was downregulated in PCa, showing an inverse correlation.
  • RNF214 directly interacted with CAV1, enhancing its ubiquitination and degradation, which suppressed PCa cell proliferation and migration.
  • Dual knockdown of RNF214 and CAV1 restored cell growth and mTOR pathway activity, confirming the axis's role.

Conclusions:

  • RNF214 promotes prostate tumor progression by ubiquitinating CAV1, leading to its degradation and sustained mTOR signaling.
  • The RNF214-CAV1 axis represents a novel regulatory mechanism in prostate cancer.
  • Targeting the RNF214-CAV1 interaction offers a potential therapeutic strategy for prostate cancer.

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