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SpirPep:一种基于计算机模拟消化的平台,可从全基因组数据库中辅助发现生物活性肽。

SpirPep: an in silico digestion-based platform to assist bioactive peptides discovery from a genome-wide database.

机构信息

Biotechnology Program, School of Bioresources and Technology, King Mongkut's University of Technology Thonburi (Bang Khun Thian), 49 Soi Thian Thale 25, Bang Khun Thian Chai Thale Rd., Tha Kham, Bang Khun Thian, Bangkok, 10150, Thailand.

Biochemical Engineering and Pilot Plant Research and Development Unit, National Center for Genetic Engineering and Biotechnology at King Mongkut's University of Technology Thonburi, 49 Soi Thian Thale 25, Bang Khun Thian Chai Thale Rd., Tha Kham, Bang Khun Thian, Bangkok, 10150, Thailand.

出版信息

BMC Bioinformatics. 2018 Apr 20;19(1):149. doi: 10.1186/s12859-018-2143-0.

Abstract

BACKGROUND

Bioactive peptides, including biological sources-derived peptides with different biological activities, are protein fragments that influence the functions or conditions of organisms, in particular humans and animals. Conventional methods of identifying bioactive peptides are time-consuming and costly. To quicken the processes, several bioinformatics tools are recently used to facilitate screening of the potential peptides prior their activity assessment in vitro and/or in vivo. In this study, we developed an efficient computational method, SpirPep, which offers many advantages over the currently available tools.

RESULTS

The SpirPep web application tool is a one-stop analysis and visualization facility to assist bioactive peptide discovery. The tool is equipped with 15 customized enzymes and 1-3 miscleavage options, which allows in silico digestion of protein sequences encoded by protein-coding genes from single, multiple, or genome-wide scaling, and then directly classifies the peptides by bioactivity using an in-house database that contains bioactive peptides collected from 13 public databases. With this tool, the resulting peptides are categorized by each selected enzyme, and shown in a tabular format where the peptide sequences can be tracked back to their original proteins. The developed tool and webpages are coded in PHP and HTML with CSS/JavaScript. Moreover, the tool allows protein-peptide alignment visualization by Generic Genome Browser (GBrowse) to display the region and details of the proteins and peptides within each parameter, while considering digestion design for the desirable bioactivity. SpirPep is efficient; it takes less than 20 min to digest 3000 proteins (751,860 amino acids) with 15 enzymes and three miscleavages for each enzyme, and only a few seconds for single enzyme digestion. Obviously, the tool identified more bioactive peptides than that of the benchmarked tool; an example of validated pentapeptide (FLPIL) from LC-MS/MS was demonstrated. The web and database server are available at http://spirpepapp.sbi.kmutt.ac.th .

CONCLUSION

SpirPep, a web-based bioactive peptide discovery application, is an in silico-based tool with an overview of the results. The platform is a one-stop analysis and visualization facility; and offers advantages over the currently available tools. This tool may be useful for further bioactivity analysis and the quantitative discovery of desirable peptides.

摘要

背景

生物活性肽是一类具有不同生物活性的蛋白质片段,其来源于生物,能够影响生物体(特别是人类和动物)的功能或状态。传统的生物活性肽鉴定方法既耗时又昂贵。为了加快这一进程,最近使用了几种生物信息学工具来促进潜在肽段的筛选,以便在体外和/或体内评估它们的活性。在这项研究中,我们开发了一种高效的计算方法 SpirPep,它比现有的工具具有许多优势。

结果

SpirPep 网络应用工具是一个一站式的分析和可视化设施,用于协助生物活性肽的发现。该工具配备了 15 种定制酶和 1-3 种错误切割选项,允许对单个、多个或全基因组规模的编码蛋白质的基因进行蛋白质序列的计算机消化,然后直接使用包含从 13 个公共数据库收集的生物活性肽的内部数据库对肽进行生物活性分类。使用此工具,可根据每个选定的酶对生成的肽进行分类,并以表格形式显示,其中肽序列可追溯到其原始蛋白质。所开发的工具和网页是使用 PHP 和 HTML 以及 CSS/JavaScript 编写的。此外,该工具允许通过通用基因组浏览器(GBrowse)进行蛋白质-肽对齐可视化,以显示每个参数内的蛋白质和肽的区域和详细信息,同时考虑到所需生物活性的消化设计。SpirPep 效率高;用 15 种酶和每种酶 3 次错误切割消化 3000 个蛋白质(751860 个氨基酸)不到 20 分钟,单个酶消化只需几秒钟。显然,该工具鉴定出的生物活性肽比基准工具更多;通过 LC-MS/MS 验证了一个五肽(FLPIL)的示例。网络和数据库服务器可在 http://spirpepapp.sbi.kmutt.ac.th 上获得。

结论

SpirPep 是一种基于网络的生物活性肽发现应用程序,是一种基于计算机的工具,提供了结果概述。该平台是一个一站式分析和可视化设施;并且比现有的工具具有优势。该工具可能对进一步的生物活性分析和理想肽的定量发现有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be11/5910554/37f3b3c7aaa9/12859_2018_2143_Fig1_HTML.jpg

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