Persistence of Drug-Resistant Leukemic Stem Cells and Impaired NK Cell Immunity in CML Patients Depend on MIR300 Antiproliferative and PP2A-Activating Functions

CML 患者中耐药白血病干细胞的持续存在和 NK 细胞免疫受损取决于 MIR300 的抗增殖和 PP2A 激活功能

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作者:Giovannino Silvestri #, Rossana Trotta #, Lorenzo Stramucci, Justin J Ellis, Jason G Harb, Paolo Neviani, Shuzhen Wang, Ann-Kathrin Eisfeld, Christopher J Walker, Bin Zhang, Klara Srutova, Carlo Gambacorti-Passerini, Gabriel Pineda, Catriona H M Jamieson, Fabio Stagno, Paolo Vigneri, Georgios Ntelio

Abstract

Persistence of drug-resistant quiescent leukemic stem cells (LSC) and impaired natural killer (NK) cell immune response account for relapse of chronic myelogenous leukemia (CML). Inactivation of protein phosphatase 2A (PP2A) is essential for CML-quiescent LSC survival and NK cell antitumor activity. Here we show that MIR300 has antiproliferative and PP2A-activating functions that are dose dependently differentially induced by CCND2/CDK6 and SET inhibition, respectively. MIR300 is upregulated in CML LSCs and NK cells by bone marrow microenvironment (BMM) signals to induce quiescence and impair immune response, respectively. Conversely, BCR-ABL1 downregulates MIR300 in CML progenitors to prevent growth arrest and PP2A-mediated apoptosis. Quiescent LSCs escape apoptosis by upregulating TUG1 long noncoding RNA that uncouples and limits MIR300 function to cytostasis. Genetic and pharmacologic MIR300 modulation and/or PP2A-activating drug treatment restore NK cell activity, inhibit BMM-induced growth arrest, and selectively trigger LSC apoptosis in vitro and in patient-derived xenografts; hence, the importance of MIR300 and PP2A activity for CML development and therapy.

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