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Inhibition of the NEDD8 conjugation pathway induces calcium-dependent compensatory activation of the pro-survival MEK/ERK pathway in acute lymphoblastic leukemia

机译:NEDD8共轭途径的抑制诱导急性淋巴细胞白血病中存活前MEK / ERK途径的钙依赖性补偿性激活

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摘要

De novo and acquired drug resistance and subsequent relapse remain major challenges in acute lymphoblastic leukemia (ALL). We previously identified that pevonedistat (TAK-924, MLN4924), a first-in-class inhibitor of NEDD8 activating enzyme (NAE), elicits ER stress and has potent in vitro and in vivo efficacy against ALL. However, in pevonedistat-treated ALL cell lines, we found consistent activation of the pro-survival MEK/ERK pathway, which has been associated with relapse and poor outcome in ALL. We uncovered that inhibition of the MEK/ERK pathway in vitro and in vivo sensitized ALL cells to pevonedistat. The observed synergistic apoptotic effect appears to be mediated by inhibition of the MEK/ERK pro-survival cascade leading to de-repression of the pro-apoptotic BIM protein. Mechanistically, Ca2+ influx via the Ca2+-release-activated Ca2+ (CRAC) channel induced protein kinase C β2 (PKC-β2) was responsible for activation of the MEK/ERK pathway in pevonedistat-treated ALL cells. Sequestration of Ca2+ using BAPTA-AM or blockage of store-operated Ca2+ entry (SOCE) using BTP-2 both attenuated the compensatory activation of MEK/ERK signaling in pevonedistat-treated ALL cells. Pevonedistat significantly altered the expression of Orai1 and stromal interaction molecule 1 (STIM1), resulting in significantly decreased STIM1 protein levels relative to Orai1. Further, we identified eIF2α as an important post-transcriptional regulator of STIM1, suggesting that pevonedistat-induced eIF2α de-phosphorylation selectively down-regulates translation of STIM1 mRNA. Consequently, our data suggest that pevonedistat potentially activates SOCE and promotes Ca2+ influx leading to activation of the MEK/ERK pathway by altering the stoichiometric Orai1:STIM1 ratio and inducing ER stress in ALL cells.
机译:从头开始和获得性耐药以及随后的复发仍然是急性淋巴细胞白血病(ALL)的主要挑战。我们先前发现,pevonedistat(TAK-924,MLN4924)是NEDD8活化酶(NAE)的首屈一指的抑制剂,可引起ER应激,并具有针对ALL的有效体外和体内功效。但是,在用培维酮酯治疗的ALL细胞系中,我们发现生存前MEK / ERK通路具有持续的激活作用,这与ALL的复发和不良预后相关。我们发现,在体外和体内对MEK / ERK途径的抑制使ALL细胞对培伐他汀敏感。所观察到的协同凋亡作用似乎是通过抑制MEK / ERK促存活级联反应而介导的,从而导致促凋亡BIM蛋白的阻遏。从机理上讲,Ca 2 + 通过Ca 2 + -释放激活的Ca 2 + (CRAC)通道诱导的蛋白激酶Cβ2(PKC)流入。 -β2)负责pevonedistat处理的ALL细胞中MEK / ERK途径的激活。使用BAPTA-AM隔离Ca 2 + 或使用BTP-2阻止存储操作的Ca 2 + 条目(SOCE)均减弱了MEK / ERK信号的代偿激活。在接受pevonedistat处理的ALL细胞中。 Pevonedistat显着改变了Orai1和基质相互作用分子1(STIM1)的表达,从而导致相对于Orai1而言,STIM1蛋白水平显着降低。此外,我们确定eIF2α是STIM1的重要转录后调控因子,提示pevonedistat诱导的eIF2α去磷酸化选择性地下调STIM1 mRNA的翻译。因此,我们的数据表明,通过改变化学计量的Orai1:STIM1比值并诱导所有细胞中的ER应激,pevonedistat可能激活SOCE并促进Ca 2 + 大量涌入,从而导致MEK / ERK途径的激活。

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