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CaM kinase control of AKT and LNCaP cell survival
John M Schmitt1, Samantha Smith, Brendon Hart
1The Biology Department, George Fox University, 414 N. Meridian St, Newberg, Oregon 97132, USA. jschmitt@georgefox.edu
Abstract:
AKT and its substrate BAD have been shown to promote prostate cancer cell survival. Agonists, such as carbachol, and hormones that increase intracellular calcium concentration can activate AKT leading to cancer cell survival. The LNCaP prostate cancer cells express the carbachol-sensitive M(3) -subtype of G protein-coupled receptors that cause increases in intracellular calcium and activate the family of Ca(2+) /calmodulin-dependent protein kinases (CaM Ks). One type of CaM Kinase, CaM Kinase Kinase (CaM KK), phosphorylates several substrates including AKT on threonine 308. AKT phosphorylation and activation enhances cell survival through phosphorylation of BAD protein and the subsequent blockade of caspase activation. Our goals were to examine the mechanism of carbachol activation of AKT and BAD in LNCaP prostate cancer cells and evaluate whether CaM KK may be mediating carbachol's activation of AKT and cell survival. Our results suggest that carbachol treatment of LNCaP cells promoted cell survival through CaM KK and its phosphorylation of AKT. The bacterial toxin anisomycin triggered caspase-3 activation in LNCaP cells that was blocked by carbachol in a CaM KK- and AKT-dependent manner. AKT and BAD phosphorylation were blocked by the selective CaM KK inhibitor, STO-609, as well as siRNA directed against CaM KK. BAD phosphorylation was also blocked by treating cells with the AKT inhibitor, AKT-X, as well as siRNA to AKT. Additionally, epinephrine promoted LNCaP cell survival through activation of AKT that was insensitive to STO-609. Taken together these data suggest a survival role for CaM KK operating through AKT and BAD in LNCaP prostate cancer cells.
Insights
Carbachol activates AKT and promotes prostate cancer cell survival via CaM Kinase Kinase (CaM KK) and AKT. This pathway blocks caspase activation, suggesting a survival role for CaM KK in LNCaP cells.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- AKT and its substrate BAD are implicated in prostate cancer cell survival.
- Carbachol and calcium-increasing hormones activate AKT, promoting cancer cell survival.
- LNCaP cells express M(3) receptors, which increase intracellular calcium and activate Ca(2+)/calmodulin-dependent protein kinases (CaM Ks).
Purpose of the Study:
- To investigate the mechanism of carbachol-induced activation of AKT and BAD in LNCaP prostate cancer cells.
- To determine if CaM Kinase Kinase (CaM KK) mediates carbachol's activation of AKT and subsequent cell survival.
Main Methods:
- Utilized LNCaP prostate cancer cells.
- Employed carbachol stimulation and anisomycin (a caspase activator).
- Used selective inhibitors (STO-609 for CaM KK, AKT-X for AKT) and siRNA to block specific pathways.
- Assessed AKT and BAD phosphorylation, and caspase-3 activation.
Main Results:
- Carbachol treatment promoted LNCaP cell survival, mediated by CaM KK and AKT phosphorylation.
- Carbachol blocked anisomycin-induced caspase-3 activation in a CaM KK- and AKT-dependent manner.
- Inhibitors and siRNA targeting CaM KK and AKT blocked phosphorylation events.
- Epinephrine also promoted LNCaP cell survival via AKT activation, independent of CaM KK.
Conclusions:
- Carbachol promotes prostate cancer cell survival through CaM KK activation of AKT and BAD.
- This pathway inhibits apoptosis by blocking caspase activation.
- CaM KK plays a significant role in LNCaP cell survival signaling.
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