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Systemic modeling myeloma-osteoclast interactions under normoxic/hypoxic condition using a novel computational approach

机译:在常氧/低氧条件下使用新型计算方法对骨髓瘤-破骨细胞相互作用进行系统建模

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摘要

Interaction of myeloma cells with osteoclasts (OC) can enhance tumor cell expansion through activation of complex signaling transduction networks. Both cells reside in the bone marrow, a hypoxic niche. How OC-myeloma interaction in a hypoxic environment affects myeloma cell growth and their response to drug treatment is poorly understood. In this study, we >i) cultured myeloma cells in the presence/absence of OCs under normoxia and hypoxia conditions and did protein profiling analysis using reverse phase protein array; >ii) computationally developed an Integer Linear Programming approach to infer OC-mediated myeloma cell-specific signaling pathways under normoxic and hypoxic conditions. Our modeling analysis indicated that in the presence OCs, (1) cell growth-associated signaling pathways, PI3K/AKT and MEK/ERK, were activated and apoptotic regulatory proteins, BAX and BIM, down-regulated under normoxic condition; (2) β1 Integrin/FAK signaling pathway was activated in myeloma cells under hypoxic condition. Simulation of drug treatment effects by perturbing the inferred cell-specific pathways showed that targeting myeloma cells with the combination of PI3K and integrin inhibitors potentially (1) inhibited cell proliferation by reducing the expression/activation of NF-κB, S6, c-Myc, and c-Jun under normoxic condition; (2) blocked myeloma cell migration and invasion by reducing the expression of FAK and PKC under hypoxic condition.
机译:骨髓瘤细胞与破骨细胞(OC)的相互作用可以通过激活复杂的信号转导网络来增强肿瘤细胞的扩增。两种细胞都位于缺氧的利基骨髓中。在低氧环境中OC-骨髓瘤相互作用如何影响骨髓瘤细胞生长及其对药物治疗的反应知之甚少。在这项研究中,我们> i )在常氧和低氧条件下在有/无OC的条件下培养骨髓瘤细胞,并使用反相蛋白质阵列进行蛋白质谱分析; > ii )以计算方式开发了一种整数线性规划方法,可在常氧和低氧条件下推断OC介导的骨髓瘤细胞特异性信号通路。我们的模型分析表明,在存在OC的情况下,(1)在常氧条件下激活了与细胞生长相关的信号传导途径PI3K / AKT和MEK / ERK,并下调了凋亡调节蛋白BAX和BIM; (2)低氧条件下骨髓瘤细胞中β1整合素/ FAK信号通路被激活。通过干扰推测的细胞特异性途径来模拟药物治疗效果,结果表明,将PI3K和整联蛋白抑制剂联合用于靶向骨髓瘤细胞可能(1)通过降低NF-κB,S6,c-Myc的表达/激活来抑制细胞增殖,和c-Jun在常氧条件下; (2)通过在缺氧条件下降低FAK和PKC的表达来阻断骨髓瘤细胞的迁移和侵袭。

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