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A network-based method using a random walk with restart algorithm and screening tests to identify novel genes associated with Menières disease

机译:一种基于网络的方法使用带有重启算法的随机游走和筛选测试来鉴定与梅尼埃病相关的新基因

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摘要

As a chronic illness derived from hair cells of the inner ear, Menière’s disease (MD) negatively influences the quality of life of individuals and leads to a number of symptoms, such as dizziness, temporary hearing loss, and tinnitus. The complete identification of novel genes related to MD would help elucidate its underlying pathological mechanisms and improve its diagnosis and treatment. In this study, a network-based method was developed to identify novel MD-related genes based on known MD-related genes. A human protein-protein interaction (PPI) network was constructed using the PPI information reported in the STRING database. A classic ranking algorithm, the random walk with restart (RWR) algorithm, was employed to search for novel genes using known genes as seed nodes. To make the identified genes more reliable, a series of screening tests, including a permutation test, an interaction test and an enrichment test, were designed to select essential genes from those obtained by the RWR algorithm. As a result, several inferred genes, such as CD4, NOTCH2 and IL6, were discovered. Finally, a detailed biological analysis was performed on fifteen of the important inferred genes, which indicated their strong associations with MD.
机译:作为源自内耳毛细胞的慢性疾病,梅尼埃病(MD)会对个人生活质量产生负面影响,并导致许多症状,例如头晕,暂时性听力下降和耳鸣。与MD相关的新基因的完整鉴定将有助于阐明其潜在的病理机制,并改善其诊断和治疗。在这项研究中,开发了一种基于网络的方法,以基于已知的MD相关基因来鉴定新型MD相关基因。使用STRING数据库中报告的PPI信息构建了人蛋白相互作用(PPI)网络。一种经典的排序算法,即随机重启动随机行走(RWR)算法,被用来使用已知基因作为种子节点来搜索新基因。为了使鉴定出的基因更可靠,设计了一系列筛选测试,包括置换测试,相互作用测试和富集测试,以从通过RWR算法获得的基因中选择必需基因。结果,发现了几种推断的基因,例如CD4,NOTCH2和IL6。最后,对15个重要的推断基因进行了详细的生物学分析,表明它们与MD有很强的关联。

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