首页> 外文期刊>Current Protein and Peptide Science >System Bioinformatic Approach Through Molecular Docking, Network Pharmacology and Microarray Data Analysis to Determine the Molecular Mechanism Underlying the Effects of Rehmanniae Radix Praeparata on Cardiovascular Diseases
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System Bioinformatic Approach Through Molecular Docking, Network Pharmacology and Microarray Data Analysis to Determine the Molecular Mechanism Underlying the Effects of Rehmanniae Radix Praeparata on Cardiovascular Diseases

机译:系统生物信息化方法通过分子对接,网络药理学和微阵列数据分析,确定康乃伊桡脂菌对心血管疾病影响的分子机制

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摘要

Cardiovascular diseases (CVDs) are the leading cause of mortality worldwide. Rehmanniae Radix Praeparata (RRP) is a popular medicinal herb widely used in traditional Chinese medicine (TCM) to treat CVDs. However, the development of this novel therapeutic product has been stagnant, and its molecular mechanism of action remains unclear. This study aims to explore the effective ingredients of RRP against CVDs, especially atherosclerosis (AS). Using the AutoDock Vina software, the RRP's ingredients were docked with the targets which can be collected by RCSB and UniProt. Then the screened ingredients and targets could be used to dispose the pathways by the Kyoto Encyclopedia of Genes and Genomes (KEGG). We used GEO, GCBI and DAVID databases to analyze the microarray data of AS which could be used to verify the results of molecular docking, all of which could show the molecular mechanism of RRP on CVDs. We also constructed a compound-target interaction network of CVD with 85 nodes and 272 edges on the basis of molecular docking analysis through Cytoscape. The network showed that forsythiaside, acteoside and stigmasterol are the most important compounds and 2HRR (ACAT (Acyl-CoA cholesterol acyl transferase) protein), 4ATB (MMP13) and 1JBQ (cystathionine beta-synthase) are the most valuable targets in the action of RRP against CVD. We also examined the biological functions involved in the biological process, molecular function and cellular components. In accordance with the analysis of GSE6054 microarray data of AS disease, the 20 most specifically expressed genes (differentially expressed genes [DEGs]) and the top 10 pathways of DEGs were discovered. Five key pathways, including non-alcoholic fatty liver disease (NAFLD), pathways in cancer and PI3K-Akt signalling pathway were also explored. Amongst these pathways, the top three were the pathways in cancer, MAPK signalling pathway and human T-cell lymphotropic virus infection. The pathways in cancer and PI3K-Akt signalling pathway were found simultaneously in the pathway analysis for CVD on RRP and for AS on microarray data. This study provided a new potential herbal medicine against CVD and has increased the understanding on the molecular mechanisms of RRP-mediated protection against CVD, especially AS.
机译:心血管疾病(CVDS)是全世界死亡率的主要原因。 Rehmanniae Radix Praparata(RRP)是一种广泛应用于中医(TCM)的流行药草以治疗CVDS。然而,这种新型治疗产品的发展已经停滞,其分子机制仍然尚不清楚。本研究旨在探讨RRP对CVDS的有效成分,尤其是动脉粥样硬化(AS)。使用Autodock Vina软件,RRP的成分与RCSB和UniProt收集的目标停靠。然后,筛选的成分和靶标可用于通过基因和基因组(Kegg)的京都百科全书来处理途径。我们使用Geo,GCBI和David数据库来分析微阵列数据,其可用于验证分子对接的结果,所有这些都可以显示RRP对CVDS的分子机制。我们还通过Cytoscape基于分子对接分析,构建了CVD的复合目标相互作用网络,其中CVD和272个边缘。该网络表明,连翘亚洲旁侧,致动己酯和脊柱甾醇是最重要的化合物和2HRR(ACAT(酰基-COA胆固醇酰基转移酶)蛋白),4ATB(MMP13)和1JBQ(胱硫脲β-合酶)是最有价值的目标RRP对抗CVD。我们还研究了生物过程,分子功能和细胞组分所涉及的生物学功能。根据GSE6054微阵列数据作为疾病的分析,发现了20个最具特异性表达的基因(差异表达基因°)和Degs的前10个途径。还探讨了五种关键途径,包括非酒精性脂肪肝疾病(NAFLD),癌症和PI3K-AKT信号通路的途径。在这些途径中,前三名是癌症,MAPK信号通路和人T细胞淋巴细胞感染的途径。在RRP上CVD的路径分析中同时发现癌症和PI3K-AKT信号传导途径的途径,以及用于微阵列数据。本研究为CVD提供了新的潜在草药,并提高了对CVD的RRP介导保护的分子机制的理解,特别是。

著录项

  • 来源
    《Current Protein and Peptide Science》 |2019年第10期|共12页
  • 作者单位

    Engineering Research Center of Chinese Medicine Resource Ministry of Education Institute of Medicinal Plant Development Chinese Academy of Medical Sciences &

    Peking Union Medical College Beijing 100193 China;

    Department of Molecular Biology Institute of Genetics and Animal Breeding of the Polish Academy of Sciences ul. Postepu 36A Jastrzebiec 05-552 Magdalenka Poland;

    School of Pharmaceutical Sciences Guizhou University Guiyang 550025 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

    RRP; CVD; AS; microarray data; molecular mechanism; signalling pathway.;

    机译:rrp;CVD;作为;微阵列数据;分子机制;信号通路。;

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