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Enhanced sensitivity of multiple myeloma cells containing PTEN mutations to CCI-779
Yijiang Shi1, Joseph Gera, Liping Hu
1Division of Hematology-Oncology, West Los Angeles VA-UCLA Medical Center and Jonsson Comprehensive Cancer Center, Los Angeles, California 90073, USA.
Abstract:
Recent work identifies the AKT kinase as a potential mediator of tumor expansion in multiple myeloma. The finding of PTEN mutations in several myeloma cell lines suggests that loss of PTEN function may be one mechanism by which AKT activity is increased in this disease. Because PTEN-deficient myeloma cells may have up-regulated activity of the mammalian target of rapamycin (mTOR), downstream of AKT, they may be particularly sensitive to mTOR inhibition. To test this hypothesis, we challenged myeloma cell lines with CCI-779, a newly developed analogue of rapamycin and an efficient inhibitor of mTOR. Three of four PTEN-deficient cell lines with constitutively active AKT were remarkably sensitive to cytoreduction and G(1) arrest induced by CCI-779 with ID(50) concentrations of <1 nM. In contrast, myeloma cells expressing wild-type PTEN were >1000-fold more resistant. Acute expression of a constitutively active AKT gene in CCI-779-resistant myeloma cells containing wild-type PTEN and quiescent AKT did not convert them to the CCI-779-sensitive phenotype. Conversely, expression of wild-type PTEN in CCI-779-sensitive, PTEN-deficient myeloma cells did not induce resistance. Differential sensitivity did not appear to be due to differences in the ability of CCI-779 to inhibit mTOR and induce dephosphorylation of p70S6kinase or 4E-BP1. However, CCI-779 inhibited expression of c-myc in CCI-sensitive PTEN-null myeloma cells but had no effect on expression in CCI-resistant cells. In contrast, cyclin D1 expression was not altered in either sensitive or resistant cells. These results indicate that PTEN-deficient myeloma cells are remarkably sensitive to mTOR inhibition. Although the results of transfection studies suggest that the level of PTEN and AKT function per se does not regulate sensitivity, PTEN/AKT status may be a good predictive marker of sensitivity.
Insights
Multiple myeloma cells lacking PTEN function are highly sensitive to mTOR inhibitors like CCI-779. This sensitivity is linked to PTEN/AKT status, suggesting it as a predictive marker for treatment response in this cancer.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- AKT kinase is implicated in multiple myeloma tumor growth.
- PTEN mutations, leading to loss of function, may increase AKT activity in myeloma.
- PTEN-deficient myeloma cells might exhibit heightened mammalian target of rapamycin (mTOR) activity, suggesting sensitivity to mTOR inhibition.
Purpose of the Study:
- To investigate the sensitivity of PTEN-deficient multiple myeloma cell lines to mTOR inhibition using CCI-779.
- To determine if PTEN/AKT status predicts sensitivity to mTOR inhibition in myeloma.
Main Methods:
- Treatment of multiple myeloma cell lines with varying PTEN status using CCI-779, a novel mTOR inhibitor.
- Assessment of cytoreduction and G1 arrest.
- Transfection studies to evaluate the role of AKT and PTEN expression in drug sensitivity.
- Analysis of mTOR inhibition and downstream signaling (p70S6kinase, 4E-BP1) and gene expression (c-myc, cyclin D1).
Main Results:
- Three of four PTEN-deficient myeloma cell lines showed remarkable sensitivity to CCI-779 (<1 nM ID50).
- Myeloma cells with wild-type PTEN were over 1000-fold more resistant to CCI-779.
- PTEN/AKT status did not directly alter CCI-779's ability to inhibit mTOR signaling.
- CCI-779 inhibited c-myc expression in sensitive PTEN-null cells but not in resistant cells.
Conclusions:
- PTEN-deficient multiple myeloma cells are highly sensitive to mTOR inhibition.
- PTEN/AKT status may serve as a predictive biomarker for sensitivity to mTOR inhibitors in multiple myeloma.
- While PTEN/AKT levels don't directly control sensitivity, their status is a key indicator.