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首页> 外文期刊>Indian journal of pharmacology. >Investigation of hub genes and their nonsynonymous single nucleotide polymorphism analysis in Plasmodium falciparum for designing therapeutic methodologies using next-generation sequencing approach
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Investigation of hub genes and their nonsynonymous single nucleotide polymorphism analysis in Plasmodium falciparum for designing therapeutic methodologies using next-generation sequencing approach

机译:用下一代测序方法对疟原虫疟原虫疟原虫疟原虫基因及其非纯单核苷酸多态性分析研究

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摘要

BACKGROUND: Incidences of resistance to current drugs by Plasmodium is increasing, hence, it is necessary to investigate and explore new drug targets to combat malarial disease.OBJECTIVE: Analysis of the transcriptome sequence information to characterize hub genes and their nonsynonymous single nucleotide polymorphisms (nsSNPs) to derive therapeutic objectives for Plasmodium falciparum.MATERIALS AND METHODS: Differentially expressed genes between Ring and other stages of P. falciparum were identified using Cufflinks tool. Using DAVID and KAAS programs, the gene ontology and pathway analysis were performed. The networks of protein-protein interaction (PPI) were developed by Search Tool for the Retrieval of Interacting Genes/Proteins and Cytoscape, and the node degree in the network was calculated by using Network Analyzer, and MCODE plugins of Cytoscape. SIFT, PROVEAN, and PredictSNP programs were used to study the genetic variations, which affect protein functions.RESULTS: A list of 4196 nonredundant genes was used for functional annotation cluster analysis, and 8 significant hub genes have been picked from the PPI network using MCODE plugins of Cytoscape. Various nsSNPs were identified in these 8 hub genes and were investigated both for its native and mutant stage for solvent accessibility and alteration in secondary structure protein residues.CONCLUSION: Hub genes identified in this study serve as potential targets to develop therapy to suppress the pathogenic action of P. falciprum through experimental techniques.
机译:背景:耐疟原虫的抗性对当前药物的血液增加正在增加,因此,有必要调查和探索对抗疟疾疾病的新药物靶标。目的:转录组序列信息的分析表征中心基因及其非纯文单核苷酸多态性(NSSNPS )为了衍生疟原虫的治疗目标。使用袖扣工具鉴定了术中环和其他阶段之间的差异表达基因。使用David和Kaas程序,进行基因本体和途径分析。通过搜索工具开发了蛋白质 - 蛋白质相互作用(PPI),用于检索相互作用基因/蛋白和蛋白质和Cytoscape,并且通过使用网络分析仪计算网络中的节点度,以及Cytoscape的MCODE插件计算。筛选,促使和预测和预测的程序用于研究影响蛋白质功能的遗传变化。结果:4196个非rledwer基因的列表用于功能注释聚类分析,并使用MCODE从PPI网络挑选8个重要的轮毂基因cytoscape插件。在这8个枢纽基因中鉴定了各种NSSNP,并研究了其天然和突变期,用于其溶剂可接受性和次级结构蛋白质残余物的变化。结论:本研究中鉴定的轮毂基因作为开发治疗的潜在靶标以抑制致病作用通过实验技术对Falciprum的影响。

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