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TRAC: A Platform for Structure-Function Studies of NSS-Proteins Integrates Information from Bioinformatics and Biomedical Literature

机译:TRAC:NSS-Proteins的结构功能研究平台与生物信息学和生物医学文献中的信息集成了信息

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To enable rigorous and reliable modeling of functional mechanisms of membrane proteins, the computational modeling and simulation approaches must take advantage, to the fullest extent possible, of the wealth of data obtained experimentally. This type of information makes it possible not only to construct rigorous molecular models and quantitative representations of function, but also to test, verify and refine them continuously. Among the proteins in the cell membrane, the family of Neurotransmitter: Sodium Symporter (NSS) exhibits highly complex mechanisms that involve multiple molecular states in the substrate and ion transport cycle. Due to their high biological and medical importance, experimental data for these systems is abundant, and efficient management of information from the literature and other relevant data sources promises to be very rewarding. We have developed an information management system (IMS) for data concerning the NSS proteins to enable retrieval, structured organization, and query of information available in the literature. The IMS supports the interplay between computational approaches and experimental studies of structure, function and physiological mechanisms of the NSS, and is of special utility in the integration of data of different types and various sources, and of the mechanistic understanding emerging from separate functional studies of individual members of the family.
机译:为了实现膜蛋白的功能机制的严格和可靠的建模,计算建模和仿真方法必须充分利用实验获得的数据的丰富数据。这种类型的信息不仅可以构建严格的分子模型和功能的定量表示,还可以连续地测试,验证和改进它们。在细胞膜中的蛋白质中,神经递质家族:钠交响者(NSS)表现出高度复杂的机制,其涉及底物和离子输送循环中的多个分子状态。由于它们的高生物和医学重要性,这些系统的实验数据是丰富,有效的信息管理信息,以及其他相关数据来源的信息很有望成为非常有益的。我们开发了一种信息管理系统(IMS),用于有关NSS蛋白的数据,以实现检索,结构化组织和文献中可用信息的查询。 IMS支持NSS结构,功能和生理机制的计算方法和实验研究之间的相互作用,以及不同类型和各种来源的数据集成的特殊效用,以及从单独的功能研究中出现的机制理解家庭的个别成员。

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