Clustering, Pathway Enrichment, and Protein-Protein Interaction Analysis of Gene Expression in Neurodevelopmental Disorders.

Q1 Pharmacology, Toxicology and Pharmaceutics Advances in Pharmacological Sciences Pub Date : 2018-11-27 eCollection Date: 2018-01-01 DOI:10.1155/2018/3632159
Ruchi Yadav, Prachi Srivastava
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引用次数: 12

Abstract

Neuronal developmental disorder is a class of diseases in which there is impairment of the central nervous system and brain function. The brain in its developmental phase undergoes tremendous changes depending upon the stage and environmental factors. Neurodevelopmental disorders include abnormalities associated with cognitive, speech, reading, writing, linguistic, communication, and growth disorders with lifetime effects. Computational methods provide great potential for betterment of research and insight into the molecular mechanism of diseases. In this study, we have used four samples of microarray neuronal developmental data: control, RV (resveratrol), NGF (nerve growth factor), and RV + NGF. By using computational methods, we have identified genes that are expressed in the early stage of neuronal development and also involved in neuronal diseases. We have used MeV application to cluster the raw data using distance metric Pearson correlation coefficient. Finally, 60 genes were selected on the basis of coexpression analysis. Further pathway analysis was done using the Metascape tool, and the biological process was studied using gene ontology database. A total of 13 genes AKT1, BAD, BAX, BCL2, BDNF, CASP3, CASP8, CASP9, MYC, PIK3CD, MAPK1, MAPK10, and CYCS were identified that are common in all clusters. These genes are involved in neuronal developmental disorders and cancers like colorectal cancer, apoptosis, tuberculosis, amyotrophic lateral sclerosis (ALS), neuron death, and prostate cancer pathway. A protein-protein interaction study was done to identify proteins that belong to the same pathway. These genes can be used to design potential inhibitors against neurological disorders at the early stage of neuronal development. The microarray samples discussed in this publication are part of the data deposited in NCBI's Gene Expression Omnibus (Yadav et al., 2018) and are accessible through GEO Series (accession number GSE121261).

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神经发育障碍基因表达的聚类、途径富集和蛋白-蛋白相互作用分析。
神经发育障碍是一类中枢神经系统和脑功能受损的疾病。处于发育阶段的大脑会因所处阶段和环境因素而发生巨大的变化。神经发育障碍包括与认知、言语、阅读、写作、语言、沟通和生长障碍相关的异常,具有终生影响。计算方法为改善研究和深入了解疾病的分子机制提供了巨大的潜力。在本研究中,我们使用了四种微阵列神经元发育数据样本:对照、RV(白藜芦醇)、NGF(神经生长因子)和RV + NGF。通过使用计算方法,我们已经确定了在神经元发育的早期阶段表达的基因,也参与了神经元疾病。我们使用MeV应用程序使用距离度量Pearson相关系数对原始数据进行聚类。最后,在共表达分析的基础上,筛选出60个基因。利用metscape工具进行进一步的通路分析,并利用基因本体数据库研究生物过程。共鉴定出13个基因AKT1、BAD、BAX、BCL2、BDNF、CASP3、CASP8、CASP9、MYC、PIK3CD、MAPK1、MAPK10和CYCS,这些基因在所有集群中都是常见的。这些基因涉及神经发育障碍和癌症,如结肠直肠癌、细胞凋亡、结核病、肌萎缩侧索硬化症(ALS)、神经元死亡和前列腺癌途径。一项蛋白质-蛋白质相互作用的研究已经完成,以确定属于同一途径的蛋白质。这些基因可用于在神经元发育的早期阶段设计潜在的神经系统疾病抑制剂。本文中讨论的微阵列样本是NCBI基因表达Omnibus (Yadav et al., 2018)中存储数据的一部分,可通过GEO Series(登录号GSE121261)访问。
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来源期刊
Advances in Pharmacological Sciences
Advances in Pharmacological Sciences PHARMACOLOGY & PHARMACY-
CiteScore
6.40
自引率
0.00%
发文量
0
审稿时长
14 weeks
期刊介绍: Advances in Pharmacological and Pharmaceutical Sciences is a peer-reviewed, Open Access journal that publishes original research articles, review articles, and clinical studies in all areas of experimental and clinical pharmacology, pharmaceutics, medicinal chemistry and drug delivery. Topics covered by the journal include, but are not limited to: -Biochemical pharmacology, drug mechanism of action, pharmacodynamics, pharmacogenetics, pharmacokinetics, and toxicology. -The design and preparation of new drugs, and their safety and efficacy in humans, including descriptions of drug dosage forms. -All areas of medicinal chemistry, such as drug discovery, design and synthesis. -Basic biology of drug and gene delivery through to application and development of these principles, through therapeutic delivery and targeting. Areas covered include bioavailability, controlled release, microcapsules, novel drug delivery systems, personalized drug delivery, and techniques for passing biological barriers.
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