RECONSTRUCTION OF SCHIZOPHRENIA GENE NETWORK IN SEARCH FOR TARGET GENES

Anastasiya Yur'evna Dokhoyan, Maksim Vital'evich Glushchenko, Y. L. Orlov
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引用次数: 1

Abstract

Nowadays, schizophrenia is a poorly understood disease with a variety of symptoms attributed to other malconditions, and controversial diagnosis without well-defined treatment. Target therapy implies disease gene network reconstruction, gene clustering, identification of gene ontology categories and genes with the largest number of network contacts. The aim of the study is to analyze schizophrenia-associated genes, determine their position in the gene network, establish their correlation, identify key genes related to the disease, and evaluate them as target genes for drug therapy. Materials and Methods. The authors analyzed currently relevant data on schizophrenia using such online databases as OMIM, PANTHER, DAVID, GeneMANIA, STRING-DB, and GeneCards. They calculated categories of gene ontologies for 200 genes, such as biological processes, molecular functions and cellular compartments that reflect schizophrenia impact on the transmission of neuronal impulses. The authors also visualized and built gene networks containing the identified key objects and their interaction, identified the most relevant schizophrenia genes (COMT, DISC1, HTR2A, NRXN1) and a strongly connected cluster, including such genes as BDNF, SLC6A4, HTR2A, HTR2C, CHRM1, SRC, AKT, YWHAE, DISC1, DRD2, COMT, NDEL1, NOS1, CAMK28, etc. Results. The biological interpretation of the results obtained is still a great challenge, since schizophrenia is a genetically complex disease with numerous causes and triggering events. Analysis of schizophrenia-associated genes, and identification of their position in the gene network (connectivity) makes it possible to find out their interaction, determine the key genes of the disease, and evaluate their prospects as target genes for drug therapy.
精神分裂症基因网络重构寻找靶基因
如今,精神分裂症是一种知之甚少的疾病,有各种各样的症状归因于其他疾病,诊断有争议,没有明确的治疗方法。靶向治疗意味着重建疾病基因网络,进行基因聚类,识别基因本体类别和网络接触最多的基因。本研究的目的是分析精神分裂症相关基因,确定其在基因网络中的位置,建立其相关性,识别与疾病相关的关键基因,并评估其作为药物治疗的靶基因。材料与方法。作者使用OMIM、PANTHER、DAVID、GeneMANIA、STRING-DB和GeneCards等在线数据库分析了目前精神分裂症的相关数据。他们计算了200个基因的基因本体类别,如生物过程、分子功能和反映精神分裂症对神经冲动传递影响的细胞区室。作者还可视化并构建了包含鉴定出的关键对象及其相互作用的基因网络,鉴定出最相关的精神分裂症基因(COMT、DISC1、HTR2A、NRXN1)和一个强连接基因群,包括BDNF、SLC6A4、HTR2A、HTR2C、CHRM1、SRC、AKT、YWHAE、DISC1、DRD2、COMT、NDEL1、NOS1、CAMK28等基因。结果。对获得的结果进行生物学解释仍然是一个巨大的挑战,因为精神分裂症是一种遗传复杂的疾病,有许多病因和触发事件。分析精神分裂症相关基因,确定它们在基因网络中的位置(连通性),可以发现它们之间的相互作用,确定疾病的关键基因,并评估它们作为药物治疗靶基因的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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