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c-Mpl-del, a c-Mpl alternative splicing isoform, promotes AMKL progression and chemoresistance
Fei Li1, Yuanyan Xiong1, Mo Yang2
1State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-sen University, Guangzhou, China.
Abstract:
Acute megakaryocytic leukemia (AMKL) is a clinically heterogeneous subtype of acute myeloid leukemia characterized by unrestricted megakaryoblast proliferation and poor prognosis. Thrombopoietin receptor c-Mpl is a primary regulator of megakaryopoeisis and a potent mitogenic receptor. Aberrant c-Mpl signaling has been implicated in a myriad of myeloid proliferative disorders, some of which can lead to AMKL, however, the role of c-Mpl in AMKL progression remains largely unexplored. Here, we identified increased expression of a c-Mpl alternative splicing isoform, c-Mpl-del, in AMKL patients. We found that c-Mpl-del expression was associated with enhanced AMKL cell proliferation and chemoresistance, and decreased survival in xenografted mice, while c-Mpl-del knockdown attenuated proliferation and restored apoptosis. Interestingly, we observed that c-Mpl-del exhibits preferential utilization of phosphorylated c-Mpl-del C-terminus Y607 and biased activation of PI3K/AKT pathway, which culminated in upregulation of GATA1 and downregulation of DDIT3-related apoptotic responses conducive to AMKL chemoresistance and proliferation. Thus, this study elucidates the critical roles of c-Mpl alternative splicing in AMKL progression and drug resistance, which may have important diagnostic and therapeutic implications for leukemia accelerated by c-Mpl-del overexpression.
Insights
A novel c-Mpl splicing isoform, c-Mpl-del, drives acute megakaryocytic leukemia (AMKL) progression and chemoresistance. Targeting this isoform offers potential new therapeutic strategies for AMKL patients.
Area of Science:
- Hematology
- Molecular Biology
- Oncology
Background:
- Acute megakaryocytic leukemia (AMKL) is a heterogeneous myeloid leukemia with poor prognosis.
- Thrombopoietin receptor c-Mpl signaling is crucial for megakaryopoiesis but its role in AMKL is unclear.
Purpose of the Study:
- To investigate the role of c-Mpl alternative splicing in AMKL progression and chemoresistance.
Main Methods:
- Identified increased c-Mpl alternative splicing isoform (c-Mpl-del) in AMKL patients.
- Assessed c-Mpl-del effects on cell proliferation, chemoresistance, and survival in xenograft models.
- Analyzed downstream signaling pathways including PI3K/AKT, GATA1, and DDIT3.
Main Results:
- c-Mpl-del expression correlated with enhanced AMKL proliferation, chemoresistance, and reduced survival.
- Knockdown of c-Mpl-del reduced proliferation and restored apoptosis.
- c-Mpl-del utilizes Y607 phosphorylation, activating PI3K/AKT, upregulating GATA1, and downregulating DDIT3-induced apoptosis.
Conclusions:
- c-Mpl alternative splicing plays a critical role in AMKL progression and drug resistance.
- c-Mpl-del overexpression has significant diagnostic and therapeutic implications for AMKL.
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