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Boolean network model for GPR142 against Type 2 diabetes and relative dynamic change ratio analysis using systems and biological circuits approach

机译:针对2型糖尿病的GPR142布尔网络模型以及使用系统和生物回路方法的相对动态变化比分析

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Systems biology addresses challenges in the analysis of genomics data, especially for complex genes and protein interactions using Meta data approach on various signaling pathways. In this paper, we report systems biology and biological circuits approach to construct pathway and identify early gene and protein interactions for predicting GPR142 responses in Type 2 diabetes. The information regarding genes, proteins and other molecules involved in Type 2 diabetes were retrieved from literature and kinetic simulation of GPR142 was carried out in order to determine the dynamic interactions. The major objective of this work was to design a GPR142 biochemical pathway using both systems biology as well as biological circuits synthetically. The term 'synthetically' refers to building biological circuits for cell signaling pathway especially for hormonal pathway disease. The focus of the paper is on logical components and logical circuits whereby using these applications users can create complex virtual circuits. Logic gates process represents only true or false and investigates whether biological regulatory circuits are active or inactive. The basic gates used are AND, NAND, OR, XOR and NOT gates and Integrated circuit composition of many such basic gates and some derived gates. Biological circuits may have a futuristic application in biomedical sciences which may involve placing a micro chip in humancells to modulate the down or up regulation of hormonal disease.
机译:系统生物学解决了基因组数据分析中的挑战,尤其是在各种信号通路上使用元数据方法进行复杂基因和蛋白质相互作用方面的挑战。在本文中,我们报告了系统生物学和生物回路方法来构建途径并鉴定早期基因和蛋白质相互作用,以预测2型糖尿病的GPR142反应。从文献中检索到有关2型糖尿病的基因,蛋白质和其他分子的信息,并进行了GPR142的动力学模拟,以确定动态相互作用。这项工作的主要目的是利用系统生物学和生物回路综合设计GPR142生化途径。术语“合成地”是指建立用于细胞信号传导途径特别是激素途径疾病的生物回路。本文的重点是逻辑组件和逻辑电路,用户可以使用这些应用程序创建复杂的虚拟电路。逻辑门过程仅代表是非题,并研究生物调节电路是活跃还是无效。所使用的基本门是AND,NAND,OR,XOR和NOT门,以及许多此类基本门和某些派生门的集成电路组成。生物回路在生物医学领域可能具有未来性的应用,可能涉及在人体细胞中放置微芯片以调节激素疾病的下调或上调。

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