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Statins regulate kinase signaling by causing changes in phosphorylation, rather than through changes in gene
Francisco Alejandro Lagunas-Rangel1,2, Jörgen Jonsson2, Ludmila Jackevica1
1Laboratory of Pharmaceutical Pharmacology, Latvian Institute of Organic Synthesis, Riga, Latvia.
Introduction:
Statins, widely used for hypercholesterolemia, have shown anticancer properties including induction of apoptosis and ferroptosis, modulation of autophagy, and reprogramming of the tumor microenvironment, making them potential candidates for repurposing in cancer therapy. Although growing evidence suggests that statins may influence kinase signaling, current data remain inconclusive. To better understand this potential mechanism, we investigated the impact of statins on kinase activity.
Methods:
We employed an integrative approach combining publicly available RNA-seq and phosphoproteomic datasets with in vitro kinome inhibition profiling. The study assessed the effects of atorvastatin, simvastatin, and cerivastatin across a panel of 400 kinases. Western blot was used to assess whether reduced PI3K phosphorylation was due to mevalonate depletion.
Results:
Our analyses revealed that statins primarily influence kinase signaling via alterations in phosphorylation rather than through transcriptional regulation or direct inhibition. Phosphoproteomic data showed a general reduction in kinase phosphorylation, although some kinases exhibited increased activity. Affected kinases were significantly enriched in cancer-associated pathways, including insulin signaling, EGF-EGFR signaling, PI3K/AKT signaling, and the PD-L1/PD-1 immune checkpoint axis. Direct inhibition was observed for two kinases: CAMK1G (IC50 = 8.9 μM) and TSSK1B (IC50 = 3.3 μM). In colorectal cancer cell lines, decreased PI3K phosphorylation was at least partially attributable to mevalonate depletion, a known consequence of statin treatment.
Discussion:
These findings suggest that the anticancer activity of statins may be mediated, at least in part, through their ability to modulate kinase phosphorylation and activity. This mechanistic insight supports further exploration of statins as modulators of kinase signaling in oncology.
Insights
Statins impact cancer by altering kinase phosphorylation, not direct inhibition. This suggests statins
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Statins, used for hyperchol. are investigated for anticancer properties.
- Evidence suggests statins influence kinase signaling, but mechanisms are unclear.
Purpose of the Study:
- Investigate statins' impact on kinase activity and signaling pathways.
Main Methods:
- Integrative analysis of RNA-seq and phosphoproteomic data.
- In vitro kinome inhibition profiling of atorvastatin, simvastatin, and cerivastatin.
- Western blot to assess PI3K phosphorylation.
Main Results:
- Statins alter kinase signaling via phosphorylation changes, not direct inhibition.
- Affected kinases are linked to cancer pathways (e.g., PI3K/AKT, immune checkpoint).
- Decreased PI3K phosphorylation is partly due to mevalonate depletion.
Conclusions:
- Statins' anticancer effects may involve modulating kinase phosphorylation and activity.
- Findings support exploring statins for cancer therapy targeting kinase signaling.
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