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通过微阵列数据比较癌症细胞与正常细胞之间的稳健性和敏感性。

Comparisons of robustness and sensitivity between cancer and normal cells by microarray data.

作者信息

Chu Liang-Hui, Chen Bor-Sen

机构信息

Lab of Control and Systems Biology, National Tsing Hua University, Hsinchu, Taiwan.

出版信息

Cancer Inform. 2008;6:165-81. doi: 10.4137/cin.s386. Epub 2008 Mar 28.

Abstract

Robustness is defined as the ability to uphold performance in face of perturbations and uncertainties, and sensitivity is a measure of the system deviations generated by perturbations to the system. While cancer appears as a robust but fragile system, few computational and quantitative evidences demonstrate robustness tradeoffs in cancer. Microarrays have been widely applied to decipher gene expression signatures in human cancer research, and quantification of global gene expression profiles facilitates precise prediction and modeling of cancer in systems biology. We provide several efficient computational methods based on system and control theory to compare robustness and sensitivity between cancer and normal cells by microarray data. Measurement of robustness and sensitivity by linear stochastic model is introduced in this study, which shows oscillations in feedback loops of p53 and demonstrates robustness tradeoffs that cancer is a robust system with some extreme fragilities. In addition, we measure sensitivity of gene expression to perturbations in other gene expression and kinetic parameters, discuss nonlinear effects in feedback loops of p53 and extend our method to robustness-based cancer drug design.

摘要

鲁棒性被定义为面对扰动和不确定性时维持性能的能力,而敏感性是衡量扰动对系统产生的系统偏差的指标。虽然癌症表现为一个鲁棒但脆弱的系统,但很少有计算和定量证据表明癌症存在鲁棒性权衡。微阵列已被广泛应用于解读人类癌症研究中的基因表达特征,全球基因表达谱的量化有助于在系统生物学中对癌症进行精确预测和建模。我们基于系统和控制理论提供了几种有效的计算方法,通过微阵列数据比较癌症细胞和正常细胞之间的鲁棒性和敏感性。本研究介绍了通过线性随机模型测量鲁棒性和敏感性,其显示了p53反馈回路中的振荡,并证明了癌症是一个具有一些极端脆弱性的鲁棒系统的鲁棒性权衡。此外,我们测量了基因表达对其他基因表达和动力学参数扰动的敏感性,讨论了p53反馈回路中的非线性效应,并将我们的方法扩展到基于鲁棒性的癌症药物设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7603/2623309/7bcc4813dcf8/cin-6-0165f1.jpg

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