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CSF3R 突变体诱导的增强 MAPK 信号传导使白血病转化对 DUSP1 产生依赖性。

Enhanced MAPK signaling induced by CSF3R mutants confers dependence to DUSP1 for leukemic transformation.

机构信息

Division of Pathology, Cincinnati Children's Hospital, Cincinnati, OH.

Division of Experimental Hematology and Cancer Biology, Cincinnati Children's Hospital, Cincinnati, OH.

出版信息

Blood Adv. 2024 Jun 11;8(11):2765-2776. doi: 10.1182/bloodadvances.2023010830.

Abstract

Elevated MAPK and the JAK-STAT signaling play pivotal roles in the pathogenesis of chronic neutrophilic leukemia and atypical chronic myeloid leukemia. Although inhibitors targeting these pathways effectively suppress the diseases, they fall short in providing enduring remission, largely attributed to the cytostatic nature of these drugs. Even combinations of these drugs are ineffective in achieving sustained remission. Enhanced MAPK signaling besides promoting proliferation and survival triggers a proapoptotic response. Consequently, malignancies reliant on elevated MAPK signaling use MAPK feedback regulators to intricately modulate the signaling output, prioritizing proliferation and survival while dampening the apoptotic stimuli. Herein, we demonstrate that enhanced MAPK signaling in granulocyte colony-stimulating factor 3 receptor (CSF3R)-driven leukemia upregulates the expression of dual specificity phosphatase 1 (DUSP1) to suppress the apoptotic stimuli crucial for leukemogenesis. Consequently, genetic deletion of Dusp1 in mice conferred synthetic lethality to CSF3R-induced leukemia. Mechanistically, DUSP1 depletion in leukemic context causes activation of JNK1/2 that results in induced expression of BIM and P53 while suppressing the expression of BCL2 that selectively triggers apoptotic response in leukemic cells. Pharmacological inhibition of DUSP1 by BCI (a DUSP1 inhibitor) alone lacked antileukemic activity due to ERK1/2 rebound caused by off-target inhibition of DUSP6. Consequently, a combination of BCI with a MEK inhibitor successfully cured CSF3R-induced leukemia in a preclinical mouse model. Our findings underscore the pivotal role of DUSP1 in leukemic transformation driven by enhanced MAPK signaling and advocate for the development of a selective DUSP1 inhibitor for curative treatment outcomes.

摘要

MAPK 和 JAK-STAT 信号通路的激活在慢性中性粒细胞白血病和不典型慢性髓性白血病的发病机制中起着关键作用。尽管针对这些通路的抑制剂能有效地抑制这些疾病,但它们并不能提供持久的缓解,主要是因为这些药物具有细胞抑制作用。即使这些药物的组合也不能有效地实现持续缓解。增强的 MAPK 信号除了促进增殖和存活外,还会引发促凋亡反应。因此,依赖于升高的 MAPK 信号的恶性肿瘤利用 MAPK 反馈调节剂来精细调节信号输出,优先考虑增殖和存活,同时抑制凋亡刺激。在此,我们证明粒细胞集落刺激因子 3 受体 (CSF3R)驱动的白血病中增强的 MAPK 信号上调了双特异性磷酸酶 1 (DUSP1)的表达,以抑制对白血病发生至关重要的凋亡刺激。因此,在小鼠中遗传删除 Dusp1 赋予了 CSF3R 诱导的白血病合成致死性。在机制上,白血病环境中 DUSP1 的耗竭导致 JNK1/2 的激活,从而导致 BIM 和 P53 的诱导表达,同时抑制 BCL2 的表达,这选择性地触发白血病细胞的凋亡反应。单独使用 DUSP1 的药理学抑制剂 BCI(一种 DUSP1 抑制剂)由于 DUSP6 的非靶标抑制导致 ERK1/2 的反弹,因此缺乏抗白血病活性。因此,BCI 与 MEK 抑制剂的联合成功地治愈了临床前小鼠模型中的 CSF3R 诱导的白血病。我们的研究结果强调了 DUSP1 在增强的 MAPK 信号驱动的白血病转化中的关键作用,并倡导开发选择性 DUSP1 抑制剂以获得治愈性治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23ed/11176961/62736783ecbd/BLOODA_ADV-2023-010830-ga1.jpg

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