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HEPNet: A Knowledge Base Model of Human Energy Pool Network for Predicting the Energy Availability Status of an Individual

机译:HEPNet:人力能量池网络的知识库模型用于预测个人的能源可用性状态

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摘要

HEPNet is an electronic representation of metabolic reactions occurring within human cellular organization focusing on inflow and outflow of the energy currency ATP, GTP and other energy associated moieties. The backbone of HEPNet consists of primary bio-molecules such as carbohydrates, proteins and fats which ultimately constitute the chief source for the synthesis and obliteration of energy currencies in a cell. A series of biochemical pathways and reactions constituting the catabolism and anabolism of various metabolites are portrayed through cellular compartmentalization. The depicted pathways function synchronously toward an overarching goal of producing ATP and other energy associated moieties to bring into play a variety of cellular functions. HEPNet is manually curated with raw data from experiments and is also connected to KEGG and Reactome databases. This model has been validated by simulating it with physiological states like fasting, starvation, exercise and disease conditions like glycaemia, uremia and dihydrolipoamide dehydrogenase deficiency (DLDD). The results clearly indicate that ATP is the master regulator under different metabolic conditions and physiological states. The results also highlight that energy currencies play a minor role. However, the moiety creatine phosphate has a unique character, since it is a ready-made source of phosphoryl groups for the rapid synthesis of ATP from ADP. HEPNet provides a framework for further expanding the network diverse age groups of both the sexes, followed by the understanding of energetics in more complex metabolic pathways that are related to human disorders.
机译:HEPNet是人类细胞组织内发生的代谢反应的电子表示,重点是能量货币ATP,GTP和其他与能量相关的部分的流入和流出。 HEPNet的主干由主要的生物分子组成,例如碳水化合物,蛋白质和脂肪,它们最终构成了细胞中能量货币的合成和消除的主要来源。通过细胞区室化描绘了构成各种代谢产物的分解代谢和合成代谢的一系列生化途径和反应。所描绘的途径朝着产生ATP和其他与能量相关的部分的首要目标同步起作用,以发挥多种细胞功能。 HEPNet由来自实验的原始数据手动管理,并且也连接到KEGG和Reactome数据库。该模型已经通过模拟诸如禁食,饥饿,运动和疾病状况(例如血糖,尿毒症和二氢脂酰胺脱氢酶缺乏症(DLDD))的生理状态进行了验证。结果清楚地表明,ATP是不同代谢条件和生理状态下的主要调节剂。结果还突出表明,能源货币的作用较小。然而,磷酸肌酸部分具有独特的特性,因为它是从ADP快速合成ATP的现成磷酸基来源。 HEPNet提供了一个框架,可以进一步扩展网络中不同性别的年龄段,然后了解与人类疾病相关的更复杂的代谢途径中的能量学。

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