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Updated: Mar 19, 2026

Assessment of Mitochondrial Functions and Cell Viability in Renal Cells Overexpressing Protein Kinase C Isozymes
Published on: January 7, 2013
Mitochondrial clearance by the STK38 kinase supports oncogenic Ras-induced cell transformation
Audrey Bettoun1, Carine Joffre1,2, Giulia Zago1
1Institut Curie, Inserm U830, Paris Sciences et Lettres University Paris, 75248, France.
Abstract:
Oncogenic Ras signalling occurs frequently in many human cancers. However, no effective targeted therapies are currently available to treat patients suffering from Ras-driven tumours. Therefore, it is imperative to identify downstream effectors of Ras signalling that potentially represent promising new therapeutic options. Particularly, considering that autophagy inhibition can impair the survival of Ras-transformed cells in tissue culture and mouse models, an understanding of factors regulating the balance between autophagy and apoptosis in Ras-transformed human cells is needed. Here, we report critical roles of the STK38 protein kinase in oncogenic Ras transformation. STK38 knockdown impaired anoikis resistance, anchorage-independent soft agar growth, and in vivo xenograft growth of Ras-transformed human cells. Mechanistically, STK38 supports Ras-driven transformation through promoting detachment-induced autophagy. Even more importantly, upon cell detachment STK38 is required to sustain the removal of damaged mitochondria by mitophagy, a selective autophagic process, to prevent excessive mitochondrial reactive oxygen species production that can negatively affect cancer cell survival. Significantly, knockdown of PINK1 or Parkin, two positive regulators of mitophagy, also impaired anoikis resistance and anchorage-independent growth of Ras-transformed human cells, while knockdown of USP30, a negative regulator of PINK1/Parkin-mediated mitophagy, restored anchorage-independent growth of STK38-depleted Ras-transformed human cells. Therefore, our findings collectively reveal novel molecular players that determine whether Ras-transformed human cells die or survive upon cell detachment, which potentially could be exploited for the development of novel strategies to target Ras-transformed cells.
Insights
STK38 protein kinase is crucial for Ras-driven cancer survival by promoting autophagy and mitophagy. Inhibiting STK38 or its downstream pathways may offer new therapeutic strategies for Ras-transformed tumors.
Area of Science:
- Oncology
- Cell Biology
- Molecular Medicine
Background:
- Oncogenic Ras signaling drives many human cancers, lacking effective targeted therapies.
- Understanding Ras downstream effectors is vital for developing new cancer treatments.
- Autophagy modulation impacts Ras-transformed cell survival, necessitating research into its regulatory factors.
Purpose of the Study:
- To investigate the role of STK38 protein kinase in oncogenic Ras transformation.
- To elucidate the mechanisms by which STK38 influences autophagy and apoptosis balance in Ras-transformed cells.
- To identify novel therapeutic targets for Ras-driven cancers.
Main Methods:
- STK38 knockdown experiments in Ras-transformed human cells.
- Assessment of anoikis resistance, anchorage-independent growth, and xenograft tumor growth.
- Analysis of autophagy, mitophagy, and mitochondrial reactive oxygen species production.
- Knockdown of mitophagy regulators (PINK1, Parkin, USP30) to study their impact.
Main Results:
- STK38 knockdown significantly impaired Ras-transformed cell survival, including anoikis resistance and tumor growth.
- STK38 promotes Ras-driven transformation by enhancing detachment-induced autophagy and mitophagy.
- STK38 is essential for clearing damaged mitochondria via mitophagy, preventing excessive ROS production.
- Modulation of mitophagy regulators (PINK1, Parkin, USP30) affected Ras-transformed cell survival.
Conclusions:
- STK38 plays a critical role in Ras-driven cancer cell survival, particularly under detachment stress.
- STK38 regulates the balance between autophagy and apoptosis through mitophagy in Ras-transformed cells.
- Targeting STK38 or related mitophagy pathways presents a promising strategy for treating Ras-driven cancers.
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