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Large-scale simulation of Eukaryotic cell signaling processes

机译:真核细胞信号传导过程的大规模仿真

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Summary form only given. A database of rate constants and related quantities has been assembled by Schoeberl et al. for intracellular signaling downstream of the epidermal growth factor receptor (EGFR). This information was combined with data on metalloprotease activation to build a model of autocrine signal transduction by cancer cells exposed to ionizing radiation. The model predicts prompt activation of mitogen-activated-protein-kinase (MAPK) pathways in response to a radiation-induced shift in the RasGDP /spl harr/ RasGTP equilibrium toward more RasGTP. A secondary MAPK activation is predicted due to metalloprotease activity that releases transforming growth factor alpha (TGF/spl alpha/), an autocrine ligand of EGFR. Model predictions were compared to data by Dent et al. on extracellular regulated kinase (ERK) activation following a 2 Gy exposure of carcinoma cells in vitro. Good agreement was obtained with the magnitude of prompt and secondary ERK activation; however, the experimental secondary response was delayed relative the prompt peak more than predicted by our model. A mechanistic understanding of radiation-induced growth factors is needed to improve treatment of cancer by radiation therapy. Inhibitors of the signaling pathways modeled in this study may reduce a potentially self-limiting aspect of radiation therapy whereby induced growth factors accelerate repopulation of treated tumor volumes.
机译:摘要表格仅给出。 Schoeberl等人组装了速率常数和相关数量的数据库。对于表皮生长因子受体(EGFR)下游的细胞内信号传导。将该信息与金属蛋白酶激活的数据相结合,通过暴露于电离辐射的癌细胞构建自分泌信号转导模型。该模型预测促进丝裂原激活蛋白激酶(MAPK)途径的响应于RASGDP / SPL HARR / RASGTP平衡朝向更多RASGTP的辐射诱导的偏移。由于金属蛋白酶的活性预测了次级MAPK激活,其释放转化生长因子α(TGF / SPL alpha /),EGFR的自分泌配体。使用DENT等人的数据进行比较模型预测。在体外2Gy癌细胞暴露后细胞外调节激酶(ERK)活化。良好的协议是以迅速和二次ERK激活的幅度获得的;然而,实验二次响应相对于我们模型预测的提示高峰延迟。需要对辐射诱导的生长因子进行机械理解,以通过放射治疗改善癌症的治疗方法。本研究中建模的信号传导途径的抑制剂可以减少放射治疗的潜在自限制方面,由此诱导的生长因子加速治疗肿瘤体积的重新灌注。

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