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通过计算系统生物学工具鉴定鞘脂代谢中的药物靶点:代谢控制分析和代谢途径分析。

Drug target identification in sphingolipid metabolism by computational systems biology tools: metabolic control analysis and metabolic pathway analysis.

机构信息

Department of Chemical Engineering, Bogazici University, 34342 Bebek, Istanbul, Turkey.

出版信息

J Biomed Inform. 2010 Aug;43(4):537-49. doi: 10.1016/j.jbi.2010.03.006. Epub 2010 Mar 27.

Abstract

Sphingolipids regulate cellular processes that are critically important in cell's fate and function in cancer development and progression. This fact underlies the basics of the novel cancer therapy approach. The pharmacological manipulation of the sphingolipid metabolism in cancer therapeutics necessitates the detailed understanding of the pathway. Two computational systems biology tools are used to identify potential drug target enzymes among sphingolipid pathway that can be further utilized in drug design studies for cancer therapy. The enzymes in sphingolipid pathway were ranked according to their roles in controlling the metabolic network by metabolic control analysis. The physiologically connected reactions, i.e. biologically significant and functional modules of network, were identified by metabolic pathway analysis. The final set of candidate drug target enzymes are selected such that their manipulation leads to ceramide accumulation and long chain base phosphates depletion. The mathematical tools' efficiency for drug target identification performed in this study is validated by clinically available drugs.

摘要

鞘脂类调节细胞过程,这些过程在癌症发展和进展中对细胞的命运和功能至关重要。这一事实是新型癌症治疗方法的基础。在癌症治疗中,药理学地操纵鞘脂代谢需要详细了解该途径。使用两种计算系统生物学工具来识别鞘脂途径中的潜在药物靶标酶,这些酶可进一步用于癌症治疗的药物设计研究。通过代谢控制分析,根据酶在控制代谢网络中的作用对鞘脂途径中的酶进行排序。通过代谢途径分析鉴定生理上相关的反应,即网络的生物学意义和功能模块。最终选择候选药物靶标酶,使其操纵导致神经酰胺积累和长链碱基磷酸酯耗尽。通过临床可用药物验证了本研究中用于药物靶标识别的数学工具的效率。

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