首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >A Thermodynamic-Based Interpretation of Protein Expression Heterogeneity in Different Glioblastoma Multiforme Tumors Identifies Tumor-Specific Unbalanced Processes
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A Thermodynamic-Based Interpretation of Protein Expression Heterogeneity in Different Glioblastoma Multiforme Tumors Identifies Tumor-Specific Unbalanced Processes

机译:基于热力学的不同胶质母细胞瘤多形性肿瘤蛋白表达异质性的解释确定了特定于肿瘤的不平衡过程

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摘要

We describe a thermodynamic-motivated, information theoretic analysis of proteomic data collected from a series of 8 glioblastoma multiforme (GBM) tumors. GBMs are considered here as prototypes of heterogeneous cancers. That heterogeneity is viewed here as manifesting in different unbalanced biological processes that are associated with thermodynamic-like constraints. The analysis yields a molecular description of a stable steady state that is common across all tumors. It also resolves molecular descriptions of unbalanced processes that are shared by several tumors, such as hyperactivated phosphoprotein signaling networks. Further, it resolves unbalanced processes that provide unique classifiers of tumor subgroups. The results of the theoretical interpretation are compared against those of statistical multivariate methods and are shown to provide a superior level of resolution for identifying unbalanced processes in GBM tumors. The identification of specific constraints for each GBM tumor suggests tumor-specific combination therapies that may reverse this imbalance.
机译:我们描述了从一系列8种胶质母细胞瘤(GBM)肿瘤中收集的蛋白质组学数据的热力学驱动的信息理论分析。 GBM在这里被视为异质性​​癌症的原型。在这里,这种异质性表现为与热力学样约束相关的不同的不平衡生物过程。该分析产生了在所有肿瘤中常见的稳定稳态的分子描述。它还解决了一些肿瘤(例如超活化的磷蛋白信号网络)共有的不平衡过程的分子描述。此外,它解决了不平衡的过程,该过程提供了肿瘤亚组的独特分类器。将理论解释的结果与统计多元方法的结果进行了比较,结果表明,该方法可提供较高的分辨率,用于鉴定GBM肿瘤中的不平衡过程。对每种GBM肿瘤的特定限制条件的鉴定表明,可以逆转这种失衡的肿瘤特异性联合疗法。

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