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Targeting pleckstrin-2/Akt signaling reduces proliferation in myeloproliferative neoplasm models
Xu Han1,2, Yang Mei1,2, Rama K Mishra3
1Department of Pathology, Feinberg School of Medicine.
Abstract:
Myeloproliferative neoplasms (MPNs) are characterized by the activated JAK2/STAT pathway. Pleckstrin-2 (Plek2) is a downstream target of the JAK2/STAT5 pathway and is overexpressed in patients with MPNs. We previously revealed that Plek2 plays critical roles in the pathogenesis of JAK2-mutated MPNs. The nonessential roles of Plek2 under physiologic conditions make it an ideal target for MPN therapy. Here, we identified first-in-class Plek2 inhibitors through an in silico high-throughput screening approach and cell-based assays, followed by the synthesis of analogs. Plek2-specific small-molecule inhibitors showed potent inhibitory effects on cell proliferation. Mechanistically, Plek2 interacts with and enhances the activity of Akt through the recruitment of downstream effector proteins. The Plek2-signaling complex also includes Hsp72, which protects Akt from degradation. These functions were blocked by Plek2 inhibitors via their direct binding to the Plek2 dishevelled, Egl-10 and pleckstrin (DEP) domain. The role of Plek2 in activating Akt signaling was further confirmed in vivo using a hematopoietic-specific Pten-knockout mouse model. We next tested Plek2 inhibitors alone or in combination with an Akt inhibitor in various MPN mouse models, which showed significant therapeutic efficacies similar to that seen with the genetic depletion of Plek2. The Plek2 inhibitor was also effective in reducing proliferation of CD34-positive cells from MPN patients. Our studies reveal a Plek2/Akt complex that drives cell proliferation and can be targeted by a class of antiproliferative compounds for MPN therapy.
Insights
Scientists discovered new small-molecule inhibitors targeting Pleckstrin-2 (Plek2) to treat myeloproliferative neoplasms (MPNs). These inhibitors block the Plek2/Akt pathway, reducing cancer cell proliferation and showing therapeutic promise for MPN patients.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Myeloproliferative neoplasms (MPNs) are driven by an overactive JAK2/STAT pathway.
- Pleckstrin-2 (Plek2), a downstream target, is overexpressed in MPNs and crucial for disease pathogenesis.
- Plek2's nonessential physiological role makes it a promising therapeutic target for MPNs.
Purpose of the Study:
- To identify and characterize first-in-class Plek2 inhibitors for MPN therapy.
- To elucidate the mechanism of Plek2 in promoting cell proliferation via Akt signaling.
- To evaluate the therapeutic efficacy of Plek2 inhibitors in MPN models.
Main Methods:
- In silico high-throughput screening and cell-based assays to identify Plek2 inhibitors.
- Synthesis and characterization of Plek2 inhibitor analogs.
- In vivo studies using mouse models and patient-derived cells.
Main Results:
- Novel Plek2 inhibitors demonstrated potent inhibition of cell proliferation.
- Plek2 was found to enhance Akt activity and protect it from degradation via a signaling complex including Hsp72.
- Plek2 inhibitors blocked Plek2-Akt interaction, showing therapeutic efficacy in MPN models and patient cells.
Conclusions:
- A Plek2/Akt signaling complex drives MPN cell proliferation.
- Targeting Plek2 with small-molecule inhibitors offers a novel therapeutic strategy for MPNs.
- Plek2 inhibitors show significant potential for MPN treatment, alone or in combination therapies.
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