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Identification of Potential Drug Targets in Cancer Signaling Pathways using Stochastic Logical Models

机译:使用随机逻辑模型识别癌症信号通路中潜在的药物靶标

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摘要

The investigation of vulnerable components in a signaling pathway can contribute to development of drug therapy addressing aberrations in that pathway. Here, an original signaling pathway is derived from the published literature on breast cancer models. New stochastic logical models are then developed to analyze the vulnerability of the components in multiple signalling sub-pathways involved in this signaling cascade. The computational results are consistent with the experimental results, where the selected proteins were silenced using specific siRNAs and the viability of the cells were analyzed 72 hours after silencing. The genes elF4E and NFkB are found to have nearly no effect on the relative cell viability and the genes JAK2, Stat3, S6K, JUN, FOS, Myc, and Mcl1 are effective candidates to influence the relative cell growth. The vulnerabilities of some targets such as Myc and S6K are found to vary significantly depending on the weights of the sub-pathways; this will be indicative of the chosen target to require customization for therapy. When these targets are utilized, the response of breast cancers from different patients will be highly variable because of the known heterogeneities in signaling pathways among the patients. The targets whose vulnerabilities are invariably high might be more universally acceptable targets.
机译:对信号传导途径中易损成分的研究可有助于解决该途径中异常的药物治疗的发展。在这里,原始的信号通路是从有关乳腺癌模型的已发表文献中得出的。然后,开发新的随机逻辑模型来分析此信令级联中涉及的多个信令子路径中组件的脆弱性。计算结果与实验结果吻合,在实验中,使用特定的siRNA沉默所选蛋白质,并在沉默72小时后分析细胞的活力。发现基因eIF4E和NFkB对相对细胞生存力几乎没有影响,而基因JAK2,Stat3,S6K,JUN,FOS,Myc和Mcl1是影响相对细胞生长的有效候选基因。发现某些目标(例如Myc和S6K)的漏洞根据子路径的权重而有很大不同。这将表明所选择的目标需要进行个性化治疗。当利用这些靶标时,由于已知患者之间信号传导途径的异质性,来自不同患者的乳腺癌的反应将高度可变。脆弱性总是很高的目标可能是更普遍接受的目标。

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