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首页> 外文期刊>Journal of biomedicine & biotechnology >Inequalities and Duality in Gene Coexpressiom Networks of HIV-1 Infection Revealed by the Combination of the Double-Connectivity Approach and the Gini's Method
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Inequalities and Duality in Gene Coexpressiom Networks of HIV-1 Infection Revealed by the Combination of the Double-Connectivity Approach and the Gini's Method

机译:双重连接方法和基尼方法相结合揭示了HIV-1感染基因共表达网络中的不平等和双重性

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摘要

The symbiosis (Sym) and pathogenesis (Pat) is a duality problem of microbial infection, including HIV/AIDS. Statistical analysis of inequalities and duality in gene coexpression networks (GCNs) of HIV-1 infection may gain novel insights into AIDS. In this study, we focused on analysis of GCNs of uninfected subjects and HIV-1-infected patients at three different stages of viral infection based on data deposited in the GEO database of NCBI. The inequalities and duality in these GCNs were analyzed by the combination of the double-connectivity (DC) approach and the Gini's method. DC analysis reveals that there are significant differences between positive and negative connectivity in HIV-1 stage-specific GCNs. The inequality measures of negative connectivity and edge weight are changed more significantly than those of positive connectivity and edge weight in GCNs from the HIV-1 uninfected to the AIDS stages. With the permutation test method, we identified a set of genes with significant changes in the inequality and duality measure of edge weight. Functional analysis shows that these genes are highly enriched for the immune system, which plays an essential role in the Sym-Pat duality (SPD) of microbial infections. Understanding of the SPD problems of HIV-1 infection may provide novel intervention strategies for AIDS.
机译:共生(Sym)和致病机理(Pat)是微生物感染(包括HIV / AIDS)的双重性问题。对HIV-1感染的基因共表达网络(GCN)中的不平等和双重性的统计分析可能会获得有关AIDS的新颖见解。在这项研究中,我们基于NCBI GEO数据库中存储的数据,重点分析了处于三个不同病毒感染阶段的未感染受试者和HIV-1感染患者的GCN。通过双连接(DC)方法和基尼方法相结合,分析了这些GCN中的不平等和对偶性。 DC分析显示,在HIV-1阶段特异性GCN中,阳性和阴性连通性之间存在显着差异。从未感染HIV-1到AIDS阶段,GCNs中负连通性和边缘权重的不平等度量比正连通性和边缘权重的不平等度量变化更大。使用置换测试方法,我们确定了一组基因,这些基因在边缘权重的不平等和对偶度量中发生了重大变化。功能分析表明,这些基因高度丰富了免疫系统,在微生物感染的Sym-Pat对偶性(SPD)中起着至关重要的作用。对HIV-1感染的SPD问题的了解可能为AIDS提供新颖的干预策略。

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