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PreSPI: Design and Implementation of Protein-Protein Interaction Prediction Service System

机译:PRESPI:蛋白质 - 蛋白质相互作用预测服务系统的设计与实现

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With the recognition of the importance of computational approach for protein-protein interaction prediction, many techniques have been developed to computationally predict protein-protein interactions. However, few techniques are actually implemented and announced in service form for general users to readily access and use the techniques. In this paper, we design and implement a protein interaction prediction service system based on the domain combination based protein-protein interaction prediction technique, which is known to show superior accuracy to other conventional computational protein-protein interaction prediction methods. In the prediction accuracy test of the method, high sensitivity (77%) and specificity (95%) are achieved for test protein pairs containing common domains with learning sets of proteins in a Yeast. The stability of the method is also manifested through the testing over DIP CORE, HMS-PCI, and TAP data. The functions of the system are divided into core, subsidiary, and generalservice function categories. The core function category includes the functions that can be provided only by using the domain combination based protein-protein interaction prediction method. Interaction prediction for a single protein pair and visualization of interaction probability distributions are the functions in this category. The subsidiary function category includes the functions that can be derived from the core functions. Domain combination pair search with high appearance probability and construction of protein interaction network are the functions in this category. Lastly, the general service function category includes the functions that can be implemented by collecting and organizing the protein and domain data in the Internet. Performance, openness and flexibility are the major design goals and they are achieved by adopting parallel execution techniques, Web Services standards, and layered architecture respectively. In this paper, several representative user interfaces of the system are alsointroduced with comprehensive usage guides.
机译:随着识别蛋白质 - 蛋白质相互作用预测的计算方法的重要性,已经开发了许多技术以计算蛋白质 - 蛋白质相互作用。但是,少量技术实际上是以服务形式实施和宣布的,以便普通用户易于访问和使用这些技术。在本文中,我们基于结构域组合基于蛋白质 - 蛋白质相互作用预测技术设计和实施蛋白质相互作用预测服务系统,其已知将卓越的准确性显示出其他常规的计算蛋白质 - 蛋白质相互作用预测方法。在该方法的预测精度试验中,对含有酵母中的学习蛋白质的常见结构域的测试蛋白对进行高灵敏度(77%)和特异性(95%)。该方法的稳定性也通过测试通过DIP核心,HMS-PCI和TAP数据进行测试。系统的功能分为核心,子公司和GeneralService函数类别。核心功能类别包括仅通过使用基于域组合的蛋白质相互作用预测方法来提供的功能。对单个蛋白质对的相互作用预测和交互概率分布的可视化是该类别中的功能。子公司函数类别包括可以从核心函数派生的函数。具有高外观概率和蛋白质交互网络的域组合对搜索是该类别中的功能。最后,常规服务函数类别包括可以通过在互联网中收集和组织蛋白质和域数据来实现的功能。性能,开放性和灵活性是主要的设计目标,它们是通过分别采用并行执行技术,Web服务标准和分层体系结构来实现的。在本文中,系统的几个具有综合使用指南的系统的代表用户界面。

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