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Distinct oncogenic Ras signals characterized by profound differences in flux through the RasGDP/RasGTP cycle

机译:独特的致癌RAS信号,其特征在于通过RASGDP / RASGTP周期的通量的深刻差异

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T cell acute lymphoblastic leukemia/lymphoma (T-ALL) is an aggressive bone marrow cancer in children and adults, and chemotherapy often fails for relapsing patients. Molecularly targeted therapy is hindered by heterogeneity in T-ALL and mechanistic details of the affected pathways in T-ALL are needed. Deregulation of Ras signals is common in T-ALL. Ras is genetically mutated to a constitutively active form in about 15% of all haematopoietic malignancies, but there is a range of other ways to augmentsignaling through the Ras pathway. Several groups including our own uncovered that RasGRPI overexpression leads to T-ALL in mouse models and in pediatric T-ALL patients, and we reported that this Ras guanine nucleotide exchange factor, RasGRPI, cooperates with cytokines to drive leukemogenesis. In our recent study by Ksionda et al. we analyzed the molecular details of cytokine receptor-RasGRPI-Ras signals in T-ALL and compared these to signals from mutated Ras alleles, which yielded several surprising results. Examples are the striking differences in flux through the RasGDP/RasGTP cycle in distinct T-ALL or unexpected differences in wiring of the Ras signaling pathway between T-ALL and normal developing T cells, which we will discuss here.
机译:T细胞急性淋巴细胞白血病/淋巴瘤(T-all)是儿童和成人的侵袭性骨髓癌,化疗常常失败患者。通过在T-All中的受影响途径的T-All和机械细节中的异质性阻碍了分子靶向治疗。 RAS信号的放松管制在T-all中是常见的。 Ras在所有出血恶性肿瘤的约15%的遗传上突变为组成型活性形式,但是通过RAS途径增强了一系列其他方式。几个团体包括我们自己的揭示,RASGRPI过度表达导致T-全部在小鼠模型和儿科T-all患者中,我们报道了该RAS鸟嘌呤核苷酸交换因子,RasGRPI与细胞因子配合以驱动白血病。在我们最近的ksionda等人的研究中。我们分析了T-all中细胞因子受体-RASGRPI-RAS信号的分子细节,并将这些与来自突变的RAS等位基因的信号进行了比较,从而产生了几种令人惊讶的结果。实施例是通过RASGDP / RASGTP周期的助焊剂的爆向差异,其在T-全部和正常开发的T细胞之间的RAS信令途径的布线中的不同T-全部或意外差异,我们将在此讨论。

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