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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Association of Wild-Type TP53 with Downregulation of Lovastatin Sensitivity in Human Non-Small Cell Lung Cancer Cells
Yu-Yao Chang1,2, Tsung-Ying Yang3,4, Gwo-Tarng Sheu1,5
1Institute of Medicine, Chung Shan Medical University, Taichung 402, Taiwan.
Abstract:
Statins inhibit 3-hydroxy-3-methylglutaryl-CoA reductase (HMGCR), the rate-limiting enzyme of the mevalonate pathway, and reduce cholesterol synthesis. They also have been demonstrated to improve prognosis in patients with various cancers, suggesting a potential anti-cancer effect of statins. However, there is no consensus on the molecular targets of statins for their anti-cancer effects. Docetaxel (DOC) is a microtubule-stabilizing agent currently used as a chemotherapeutic drug in several cancers, including lung cancer. Interestingly, the anti-cancer effects of either drug that are related to abnormal or wild-type TP53 gene have been implied. Therefore, the drug sensitivity of DOC and lovastatin in human lung cancer cells was evaluated. We found that H1355 (mutant TP53-E285K), CL1 (mutant TP53-R248W), and H1299 (TP53-null) human non-small cell lung cancer cells were more sensitive to lovastatin than A549 and H460 cells expressing wild-type TP53. Conversely, A549 and H460 cells showed higher sensitivity to DOC than H1299 and CL1 cells, as demonstrated by the MTT assay. When endogenous TP53 activity was inhibited by pifithrin-α in A549 and H460 cells, lovastatin sensitivities significantly increased, and cancer cell viabilities markedly reduced. These results indicate that TP53 status is associated with the anti-cancer effect of statins in human lung cancer cells. Mutated or null TP53 status is correlated with higher statin sensitivity. Furthermore, DOC-resistant H1299 (H1299/D8) cells showed significant sensitivity to lovastatin treatment compared to DOC-resistant A549 (A549/D16) cells, indicating a potential application of statins/chemotherapy combination therapy to control wild-type and abnormal TP53-containing human lung tumors.
Insights
Statins show anti-cancer effects in lung cancer cells, with sensitivity linked to TP53 gene status. Mutated or null TP53 correlates with higher statin sensitivity, suggesting combination therapy potential.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Statins, known for cholesterol reduction, exhibit anti-cancer properties.
- Docetaxel (DOC) is a chemotherapy drug for lung cancer.
- The role of TP53 gene status in drug sensitivity is under investigation.
Purpose of the Study:
- To evaluate the drug sensitivity of docetaxel (DOC) and lovastatin in human lung cancer cells.
- To determine the association between TP53 gene status and sensitivity to statins and DOC.
- To explore the potential of statin/chemotherapy combination therapy.
Main Methods:
- MTT assay was used to assess drug sensitivity in various human non-small cell lung cancer cell lines.
- Cancer cell lines with different TP53 statuses (mutant, null, wild-type) were utilized.
- Endogenous TP53 activity was inhibited using pifithrin-α.
Main Results:
- Lung cancer cells with mutant or null TP53 were more sensitive to lovastatin than wild-type TP53 cells.
- Wild-type TP53 cells showed higher sensitivity to DOC compared to TP53-null or mutant cells.
- Inhibiting TP53 activity increased lovastatin sensitivity and reduced cancer cell viability.
Conclusions:
- TP53 gene status is a significant factor in the anti-cancer effects of statins in lung cancer.
- Mutated or null TP53 status is associated with increased sensitivity to statins.
- Statins may offer a therapeutic strategy, particularly in combination therapy, for lung tumors with specific TP53 mutations.
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