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The rationale for deltanoids in therapy for myeloid leukemia: role of KSR-MAPK-C/EBP pathway
George P Studzinski1, Xuening Wang, Yan Ji
1Department of Pathology and Medicine, UMDNJ, New Jersey Medical School, Newark 07103, USA. studzins@umdnj.edu
Abstract:
The evidence for the promising potential for derivatives of Vitamin D (deltanoids) in the treatment of myeloid leukemias is increasing, but currently is not matched by the understanding of the precise mechanisms by which these anti-neoplastic effects are achieved. Unlike solid tumors in which growth retardation by deltanoids appears to result from inhibition of cell proliferation and the promotion of cell death by apoptosis, control of myeloid leukemia proliferation by deltanoids results from the induction of differentiation of the immature myelo-monocytic cells towards functional monocytic cells. We present here the accumulating evidence that a pathway that is initiated by deltanoid activation of Vitamin D receptor (VDR) and leads to monocytic differentiation of human myeloblastic HL60 cells, includes the MEK-ERK and JNK mitogen-activated protein kinases (MAPKs), their positive and negative regulators and a downstream effector C/EBPbeta. As in other cells, the abundance of VDR protein increases shortly after an exposure of HL60 cells to 1alpha,25-dihydroxyvitamin D(3) (1alpha,25(OH)(2) D(3)). Other early events include a parallel upregulation of kinase suppressor of Ras (KSR-1) and the activation of the ERK MAPK pathway and data suggest that KSR-1 acts to amplify the signal provided by low concentrations of 1alpha,25(OH)(2) D(3). Maintenance of monocytic differentiation may be enhanced by JNK, but diminished by p38, MAPK signaling. Downstream, one of the targets of these pathways is C/EBPbeta, which can directly interact with the promoter for CD14, a gene characteristically expressed in monocytes. Importantly, in freshly obtained acute myeloid leukemia (AML)-M2 cells exposed to PRI-2191, a novel deltanoid with a modified side chain, upregulation of C/EBPbeta paralleled the induction of monocytic differentiation. These data provide a basis for the hypothesis that deltanoid-induced upregulation of C/EBPbeta bypasses the block to granulocytic differentiation in myeloid leukemia cells by redirecting the cells to monocytic differentiation.
Insights
Vitamin D derivatives (deltanoids) induce monocytic differentiation in myeloid leukemia cells by activating the Vitamin D receptor (VDR) pathway. This process involves specific mitogen-activated protein kinases (MAPKs) and C/EBPbeta, offering a novel therapeutic strategy.
Area of Science:
- Molecular Biology
- Cancer Research
- Endocrinology
Background:
- Vitamin D derivatives (deltanoids) show potential in treating myeloid leukemias.
- The precise anti-neoplastic mechanisms of deltanoids in myeloid leukemias are not fully understood.
- Deltanoids induce differentiation of myeloid leukemia cells, unlike their effect on solid tumors.
Purpose of the Study:
- To elucidate the molecular mechanisms by which deltanoids induce monocytic differentiation in human myeloblastic HL60 cells.
- To identify key signaling pathways and downstream effectors involved in deltanoid-mediated differentiation.
Main Methods:
- Activation of the Vitamin D receptor (VDR) by deltanoids.
- Analysis of mitogen-activated protein kinase (MAPK) pathways, including MEK-ERK and JNK.
- Investigation of downstream effector C/EBPbeta and its role in CD14 gene promoter interaction.
Main Results:
- Deltanoid exposure increases VDR protein abundance and upregulates kinase suppressor of Ras (KSR-1) in HL60 cells.
- The ERK MAPK pathway is activated, potentially amplified by KSR-1, while JNK signaling promotes and p38 signaling diminishes differentiation.
- Upregulation of C/EBPbeta is observed, which interacts with the CD14 promoter, and this is paralleled by monocytic differentiation in AML-M2 cells treated with a novel deltanoid (PRI-2191).
Conclusions:
- Deltanoid-induced monocytic differentiation involves the VDR, MAPK pathways (ERK, JNK, p38), and C/EBPbeta.
- C/EBPbeta upregulation appears to be a key mechanism by which deltanoids redirect myeloid leukemia cells towards monocytic differentiation.
- These findings support the hypothesis that deltanoids can bypass differentiation blocks in myeloid leukemias, offering a potential therapeutic avenue.
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