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一种用于复杂疾病基因研究的系统生物学方法。

A systems biology approach to genetic studies of complex diseases.

作者信息

Xiong Momiao, Feghali-Bostwick Carol A, Arnett Frank C, Zhou Xiaodong

机构信息

Human Genetics Center, University of Texas School of Public Health, Houston, 77030, USA.

出版信息

FEBS Lett. 2005 Oct 10;579(24):5325-32. doi: 10.1016/j.febslet.2005.08.058.

Abstract

Revealing mechanisms underlying complex diseases poses great challenges to biologists. The traditional linkage and linkage disequilibrium analysis that have been successful in the identification of genes responsible for Mendelian traits, however, have not led to similar success in discovering genes influencing the development of complex diseases. Emerging functional genomic and proteomic ('omic') resources and technologies provide great opportunities to develop new methods for systematic identification of genes underlying complex diseases. In this report, we propose a systems biology approach, which integrates omic data, to find genes responsible for complex diseases. This approach consists of five steps: (1) generate a set of candidate genes using gene-gene interaction data sets; (2) reconstruct a genetic network with the set of candidate genes from gene expression data; (3) identify differentially regulated genes between normal and abnormal samples in the network; (4) validate regulatory relationship between the genes in the network by perturbing the network using RNAi and monitoring the response using RT-PCR; and (5) genotype the differentially regulated genes and test their association with the diseases by direct association studies. To prove the concept in principle, the proposed approach is applied to genetic studies of the autoimmune disease scleroderma or systemic sclerosis.

摘要

揭示复杂疾病背后的机制给生物学家带来了巨大挑战。传统的连锁分析和连锁不平衡分析在鉴定导致孟德尔性状的基因方面取得了成功,然而,在发现影响复杂疾病发展的基因方面却没有取得类似的成功。新兴的功能基因组学和蛋白质组学(“组学”)资源与技术为开发系统鉴定复杂疾病潜在基因的新方法提供了巨大机遇。在本报告中,我们提出了一种整合组学数据的系统生物学方法来寻找导致复杂疾病的基因。该方法包括五个步骤:(1)使用基因 - 基因相互作用数据集生成一组候选基因;(2)根据基因表达数据用候选基因集重建遗传网络;(3)识别网络中正常样本和异常样本之间差异调节的基因;(4)通过使用RNA干扰扰动网络并使用逆转录 - 聚合酶链反应监测反应来验证网络中基因之间的调控关系;(5)对差异调节的基因进行基因分型,并通过直接关联研究测试它们与疾病的关联。为了从原理上证明这一概念,将所提出的方法应用于自身免疫性疾病硬皮病或系统性硬化症的遗传研究。

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