Targeting the RAS/MAPK pathway with miR-181a in acute myeloid leukemia

利用 miR-181a 靶向治疗急性髓系白血病中的 RAS/MAPK 通路

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作者:Xiaomeng Huang, Sebastian Schwind, Ramasamy Santhanam, Ann-Kathrin Eisfeld, Chi-Ling Chiang, Malori Lankenau, Bo Yu, Pia Hoellerbauer, Yan Jin, Somayeh S Tarighat, Jihane Khalife, Alison Walker, Danilo Perrotti, Clara D Bloomfield, Hongyan Wang, Robert J Lee, Ly James Lee, Guido Marcucci

Abstract

Deregulation of microRNAs' expression frequently occurs in acute myeloid leukemia (AML). Lower miR-181a expression is associated with worse outcomes, but the exact mechanisms by which miR-181a mediates this effect remain elusive. Aberrant activation of the RAS pathway contributes to myeloid leukemogenesis. Here, we report that miR-181a directly binds to 3'-untranslated regions (UTRs); downregulates KRAS, NRAS and MAPK1; and decreases AML growth. The delivery of miR-181a mimics to target AML cells using transferrin-targeting lipopolyplex nanoparticles (NP) increased mature miR-181a; downregulated KRAS, NRAS and MAPK1; and resulted in decreased phosphorylation of the downstream RAS effectors. NP-mediated upregulation of miR-181a led to reduced proliferation, impaired colony formation and increased sensitivity to chemotherapy. Ectopic expression of KRAS, NRAS and MAPK1 attenuated the anti-leukemic activity of miR-181a mimics, thereby validating the relevance of the deregulated miR-181a-RAS network in AML. Finally, treatment with miR-181a-NP in a murine AML model resulted in longer survival compared to mice treated with scramble-NP control. These data support that targeting the RAS-MAPK-pathway by miR-181a mimics represents a novel promising therapeutic approach for AML and possibly for other RAS-driven cancers.

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