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Pim-1 Kinase Phosphorylates and Stabilizes 130 kDa FLT3 and Promotes Aberrant STAT5 Signaling in Acute Myeloid Leukemia with FLT3 Internal Tandem Duplication

机译:Pim-1激酶磷酸化并稳定130 kDa FLT3并通过FLT3内部串联复制促进急性髓样白血病的异常STAT5信号传导。

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摘要

The type III receptor tyrosine kinase fms-like tyrosine kinase 3 (FLT3) is expressed on both normal hematopoietic stem cells and acute myeloid leukemia (AML) cells and regulates their proliferation. Internal tandem duplication (ITD) mutation of FLT3 is present in a third of AML cases, results in constitutive activation and aberrant signaling of FLT3, and is associated with adverse treatment outcomes. While wild-type (WT) FLT3 is predominantly a 150 kDa complex glycosylated cell surface protein, FLT3-ITD is partially retained in the endoplasmic reticulum as a 130 kDa underglycosylated species associated with the chaperones calnexin and heat shock protein (HSP) 90, and mediates aberrant STAT5 signaling, which upregulates the oncogenic serine/threonine kinase Pim-1. FLT3 contains a Pim-1 substrate consensus serine phosphorylation site, and we hypothesized that it might be a Pim-1 substrate. Pim-1 was indeed found to directly interact with and serine-phosphorylate FLT3. Pim-1 inhibition decreased the expression and half-life of 130 kDa FLT3, with partial abrogation by proteasome inhibition, in association with decreased FLT3 binding to calnexin and HSP90, and increased 150 kDa FLT3 expression and half-life, with abrogation by inhibition of glycosylation. These findings were consistent with Pim-1 stabilizing FLT3-ITD as a 130 kDa species associated with calnexin and HSP90 and inhibiting its glycosylation to form the 150 kDa species. Pim-1 knockdown effects were similar. Pim-1 inhibition also decreased phosphorylation of FLT3 at tyrosine 591 and of STAT5, and expression of Pim-1 itself, consistent with inhibition of the FLT3-ITD-STAT5 signaling pathway. Finally, Pim-1 inhibition synergized with FLT3 inhibition in inducing apoptosis of FLT3-ITD cells. This is, to our knowledge, the first demonstration of a role of Pim-1 in a positive feedback loop promoting aberrant signaling in malignant cells.
机译:III型受体酪氨酸激酶fms样酪氨酸激酶3(FLT3)在正常造血干细胞和急性髓细胞白血病(AML)细胞上均表达并调节其增殖。三分之一的AML病例中存在FLT3的内部串联重复(ITD)突变,导致FLT3的组成性激活和异常信号传导,并与不良治疗结果相关。野生型(WT)FLT3主要是150 kDa的复杂糖基化细胞表面蛋白,而FLT3-ITD作为与伴侣钙联接蛋白和热休克蛋白(HSP)90相关的130 kDa糖基化程度低的物种保留在内质网中。介导异常的STAT5信号转导,该信号上调了致癌的丝氨酸/苏氨酸激酶Pim-1。 FLT3包含一个Pim-1底物共有丝氨酸磷酸化位点,我们假设它可能是Pim-1底物。确实发现Pim-1直接与FLT3丝氨酸相互作用。 Pim-1抑制可降低130 kDa FLT3的表达和半衰期,并通过蛋白酶体抑制而部分废除,与FLT3与钙联接蛋白和HSP90的结合减少有关,并增加150 kDa FLT3的表达和半衰期,并通过抑制Flk3来废除。糖基化。这些发现与Pim-1稳定的FLT3-ITD为130 kDa的物种有关,与钙粘蛋白和HSP90相关,并抑制其糖基化形成150 kDa的物种。 Pim-1的击倒效果相似。 Pim-1抑制还降低了酪氨酸591和STAT5处FLT3的磷酸化,以及Pim-1本身的表达,与FLT3-ITD-STAT5信号通路的抑制相一致。最后,Pim-1抑制与FLT3抑制协同诱导FLT3-ITD细胞凋亡。据我们所知,这是Pim-1在促进恶性细胞中异常信号转导的正反馈回路中的作用的首次证明。

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