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LiSIs: An Online Scientific Workflow System for Virtual Screening

机译:LiSIs:用于虚拟筛选的在线科学工作流程系统

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Modern methods of drug discovery and development in recent years make a wide use of computational algorithms. These methods utilise Virtual Screening (VS), which is the computational counterpart of experimental screening. In this manner the in silico models and tools initial replace the wet lab methods saving time and resources. This paper presents the overall design and implementation of a web based scientific workflow system for virtual screening called, the Life Sciences Informatics (LiSIs) platform. The LiSIs platform consists of the following layers: the input layer covering the data file input; the pre-processing layer covering the descriptors calculation, and the docking preparation components; the processing layer covering the attribute filtering, compound similarity, substructure matching, docking prediction, predictive modelling and molecular clustering; post-processing layer covering the output reformatting and binary file merging components; output layer covering the storage component. The potential of LiSIs platform has been demonstrated through two case studies designed to illustrate the preparation of tools for the identification of promising chemical structures. The first case study involved the development of a Quantitative Structure Activity Relationship (QSAR) model on a literature dataset while the second case study implemented a docking-based virtual screening experiment. Our results show that VS workflows utilizing docking, predictive models and other in silico tools as implemented in the LiSIs platform can identify compounds in line with expert expectations. We anticipate that the deployment of LiSIs, as currently implemented and available for use, can enable drug discovery researchers to more easily use state of the art computational techniques in their search for promising chemical compounds.
机译:近年来,现代药物发现和开发方法广泛使用了计算算法。这些方法利用虚拟筛选(VS),它是实验筛选的计算对应物。以这种方式,计算机模型和工具最初取代了湿实验室方法,从而节省了时间和资源。本文介绍了用于虚拟筛选的基于Web的科学工作流程系统(称为生命科学信息(LiSIs)平台)的总体设计和实现。 LiSIs平台包括以下几层:输入层,覆盖数据文件的输入;覆盖描述符计算的预处理层以及对接准备组件;处理层覆盖属性过滤,化合物相似性,子结构匹配,对接预测,预测建模和分子聚类;后处理层覆盖输出重新格式化和二进制文件合并组件;输出层覆盖存储组件。通过两个案例研究证明了LiSIs平台的潜力,这两个案例研究旨在说明用于鉴定有前途的化学结构的工具的制备。第一个案例研究涉及在文献数据集上开发定量结构活性关系(QSAR)模型,而第二个案例研究实施了基于对接的虚拟筛选实验。我们的结果表明,利用LiSIs平台中实现的对接,预测模型和其他计算机软件工具的VS工作流可以识别符合专家期望的化合物。我们预计,目前实施并可供使用的LiSI的部署可以使药物发现研究人员能够更轻松地使用最新的计算技术来寻找有前途的化合物。

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