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Updated: Aug 14, 2026

Assessment of Mitochondrial Functions and Cell Viability in Renal Cells Overexpressing Protein Kinase C Isozymes
Published on: January 7, 2013
Molecular mechanisms of protein kinase C-induced apoptosis in prostate cancer cells
Anatilde M Gonzalez-Guerrico1, John Meshki, Liqing Xiao
1Department of Pharmacology, University of Pennsylvania School of Medicine, Philadelphia, PA 19104-6160, USA.
Abstract:
Protein kinase C (PKC) isozymes, a family of serine-threonine kinases, are important regulators of cell proliferation and malignant transformation. Phorbol esters, the prototype PKC activators, cause PKC translocation to the plasma membrane in prostate cancer cells, and trigger an apoptotic response. Studies in recent years have determined that each member of the PKC family exerts different effects on apoptotic or survival pathways. PKCdelta, one of the novel PKCs, is a key player of the apoptotic response via the activation of the p38 MAPK pathway. Studies using RNAi revealed that depletion of PKCdelta totally abolishes the apoptotic effect of the phorbol ester PMA. Activation of the classical PKCalpha promotes the dephosphorylation and inactivation of the survival kinase Akt. Studies have assigned a pro-survival role to PKCepsilon, but the function of this PKC isozyme remains controversial. Recently, it has been determined that the PKC apoptotic effect in androgen-dependent prostate cancer cells is mediated by the autocrine secretion of death factors. PKCdelta stimulates the release of TNFalpha from the plasma membrane, and blockade of TNFalpha secretion or TNFalpha receptors abrogates the apoptotic response of PMA. Molecular analysis indicates the requirement of the extrinsic apoptotic cascade via the activation of death receptors and caspase-8. Dissecting the pathways downstream of PKC isozymes represents a major challenge to understanding the molecular basis of phorbol ester-induced apoptosis.
Insights
Protein Kinase C (PKC) isozymes regulate cell proliferation and cancer. Phorbol esters induce apoptosis in prostate cancer cells, with PKCdelta activating TNFalpha release and caspase-8, crucial for this cell death pathway.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Protein Kinase C (PKC) isozymes are serine-threonine kinases regulating cell proliferation and malignant transformation.
- PKC activators, like phorbol esters, induce apoptosis in prostate cancer cells by translocating PKC to the plasma membrane.
- Different PKC isozymes have distinct roles in apoptosis and survival pathways.
Purpose of the Study:
- To investigate the specific roles of PKC isozymes in phorbol ester-induced apoptosis in prostate cancer.
- To elucidate the downstream signaling pathways mediating apoptosis, including the involvement of TNFalpha and caspase-8.
Main Methods:
- Utilized RNA interference (RNAi) to deplete PKCdelta and assess its effect on apoptosis.
- Analyzed the activation of p38 MAPK and Akt pathways in response to PKC activation.
- Investigated the role of TNFalpha secretion and death receptor signaling in the apoptotic cascade.
Main Results:
- PKCdelta is essential for phorbol ester-induced apoptosis, activating the p38 MAPK pathway.
- PKCalpha activation leads to Akt inactivation, while PKCepsilon's role is controversial.
- PKC-induced apoptosis involves autocrine TNFalpha secretion and activation of the extrinsic apoptotic cascade via death receptors and caspase-8.
Conclusions:
- PKCdelta plays a critical role in initiating apoptosis in prostate cancer cells through TNFalpha and caspase-8 activation.
- Understanding PKC signaling pathways is vital for deciphering the molecular basis of phorbol ester-induced apoptosis in cancer.
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