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Published on: December 9, 2016
MAPK signaling cascades mediate distinct glucocorticoid resistance mechanisms in pediatric leukemia
Courtney L Jones1, Christy M Gearheart2, Susan Fosmire2
1Laura and Isaac Perlmutter Cancer Center, New York University Langone Medical Center, New York, NY;
Abstract:
The outcome for pediatric acute lymphoblastic leukemia (ALL) patients who relapse is dismal. A hallmark of relapsed disease is acquired resistance to multiple chemotherapeutic agents, particularly glucocorticoids. In this study, we performed a genome-scale short hairpin RNA screen to identify mediators of prednisolone sensitivity in ALL cell lines. The incorporation of these data with an integrated analysis of relapse-specific genetic and epigenetic changes allowed us to identify the mitogen-activated protein kinase (MAPK) pathway as a mediator of prednisolone resistance in pediatric ALL. We show that knockdown of the specific MAPK pathway members MEK2 and MEK4 increased sensitivity to prednisolone through distinct mechanisms. MEK4 knockdown increased sensitivity specifically to prednisolone by increasing the levels of the glucocorticoid receptor. MEK2 knockdown increased sensitivity to all chemotherapy agents tested by increasing the levels of p53. Furthermore, we demonstrate that inhibition of MEK1/2 with trametinib increased sensitivity of ALL cells and primary samples to chemotherapy in vitro and in vivo. To confirm a role for MAPK signaling in patients with relapsed ALL, we measured the activation of the MEK1/2 target ERK in matched diagnosis-relapse primary samples and observed increased phosphorylated ERK levels at relapse. Furthermore, relapse samples have an enhanced response to MEK inhibition compared to matched diagnosis samples in xenograft models. Together, our data indicate that inhibition of the MAPK pathway increases chemosensitivity to glucocorticoids and possibly other agents and that the MAPK pathway is an attractive target for prevention and/or treatment of relapsed disease.
Insights
Relapsed acute lymphoblastic leukemia (ALL) shows drug resistance. Targeting the mitogen-activated protein kinase (MAPK) pathway with MEK inhibitors can restore sensitivity to chemotherapy, offering a new treatment strategy for pediatric ALL patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Pediatric acute lymphoblastic leukemia (ALL) relapse is associated with dismal outcomes.
- Acquired resistance to chemotherapy, especially glucocorticoids, is a hallmark of relapsed ALL.
Purpose of the Study:
- To identify mediators of prednisolone sensitivity in ALL.
- To investigate the role of the mitogen-activated protein kinase (MAPK) pathway in mediating prednisolone resistance in pediatric ALL.
Main Methods:
- Genome-scale short hairpin RNA screen in ALL cell lines.
- Integrated analysis of relapse-specific genetic and epigenetic changes.
- In vitro and in vivo studies using MEK inhibitors (trametinib) and ALL cell lines/primary samples.
Main Results:
- Knockdown of MEK4 increased prednisolone sensitivity by upregulating the glucocorticoid receptor.
- Knockdown of MEK2 increased sensitivity to multiple agents by upregulating p53.
- MEK1/2 inhibition with trametinib enhanced ALL cell sensitivity to chemotherapy in vitro and in vivo.
- Increased phosphorylated ERK levels at relapse and enhanced response to MEK inhibition in relapse xenograft models confirmed MAPK pathway activation in relapsed ALL.
Conclusions:
- The MAPK pathway is a key mediator of prednisolone resistance in pediatric ALL.
- Inhibition of the MAPK pathway can restore chemosensitivity to glucocorticoids and potentially other agents.
- Targeting the MAPK pathway represents a promising strategy for preventing and treating relapsed ALL.
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