{"title":"ProFun:寄生原生动物基因功能富集分析网络服务器","authors":"Po-Jung Huang , Yi-Chen Weng , Kuo-Yang Huang , Chi-Ching Lee , Yuan-Ming Yeh , Yu-Tong Chen , Cheng-Hsun Chiu , Petrus Tang","doi":"10.1016/j.jmii.2024.01.007","DOIUrl":null,"url":null,"abstract":"<div><h3>Background</h3><p>The initial step to interpreting putative biological functions from comparative multi-omics studies usually starts from a differential expressed gene list followed by functional enrichment analysis (FEA). However, most FEA packages are designed exclusively for humans and model organisms. Although parasitic protozoan is the most important pathogen in the tropics, no FEA package is available for protozoan functional (ProFun) enrichment analysis. To speed up comparative multi-omics research on parasitic protozoans, we constructed ProFun, a web-based, user-friendly platform for the research community.</p></div><div><h3>Methods</h3><p>ProFun utilizes the Docker container, ShinyProxy, and R Shiny to construct a scalable web service with load-balancing infrastructure. We have integrated a series of visual analytic functions, in-house scripts, and custom-made annotation packages to create three analytical modules for 40 protozoan species: (1) Gene Overlaps; (2) Over-representation Analysis (ORA); (3) Gene Set Enrichment Analysis (GSEA).</p></div><div><h3>Results</h3><p>We have established ProFun, a web server for functional enrichment analysis of differentially expressed genes. FEA becomes as simple as pasting a list of gene IDs into the textbox of our website. Users can customize enrichment parameters and results with just one click. The intuitive web interface and publication-ready charts enable users to reveal meaningful biological events and pinpoint potential targets for further studies.</p></div><div><h3>Conclusion</h3><p>ProFun is the first web application that enables gene functional enrichment analysis of parasitic protozoans. In addition to supporting FEA analysis, ProFun also allows the comparison of FEA results across complicated experimental designs. ProFun is freely available at <span>http://dalek.cgu.edu.tw:8080/app/profun</span><svg><path></path></svg>.</p></div>","PeriodicalId":56117,"journal":{"name":"Journal of Microbiology Immunology and Infection","volume":"57 3","pages":"Pages 509-517"},"PeriodicalIF":4.5000,"publicationDate":"2024-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.sciencedirect.com/science/article/pii/S1684118224000082/pdfft?md5=da2b1e7df910725f9a188a4ac4ea5200&pid=1-s2.0-S1684118224000082-main.pdf","citationCount":"0","resultStr":"{\"title\":\"ProFun: A web server for functional enrichment analysis of parasitic protozoan genes\",\"authors\":\"Po-Jung Huang , Yi-Chen Weng , Kuo-Yang Huang , Chi-Ching Lee , Yuan-Ming Yeh , Yu-Tong Chen , Cheng-Hsun Chiu , Petrus Tang\",\"doi\":\"10.1016/j.jmii.2024.01.007\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><h3>Background</h3><p>The initial step to interpreting putative biological functions from comparative multi-omics studies usually starts from a differential expressed gene list followed by functional enrichment analysis (FEA). However, most FEA packages are designed exclusively for humans and model organisms. Although parasitic protozoan is the most important pathogen in the tropics, no FEA package is available for protozoan functional (ProFun) enrichment analysis. To speed up comparative multi-omics research on parasitic protozoans, we constructed ProFun, a web-based, user-friendly platform for the research community.</p></div><div><h3>Methods</h3><p>ProFun utilizes the Docker container, ShinyProxy, and R Shiny to construct a scalable web service with load-balancing infrastructure. We have integrated a series of visual analytic functions, in-house scripts, and custom-made annotation packages to create three analytical modules for 40 protozoan species: (1) Gene Overlaps; (2) Over-representation Analysis (ORA); (3) Gene Set Enrichment Analysis (GSEA).</p></div><div><h3>Results</h3><p>We have established ProFun, a web server for functional enrichment analysis of differentially expressed genes. FEA becomes as simple as pasting a list of gene IDs into the textbox of our website. Users can customize enrichment parameters and results with just one click. The intuitive web interface and publication-ready charts enable users to reveal meaningful biological events and pinpoint potential targets for further studies.</p></div><div><h3>Conclusion</h3><p>ProFun is the first web application that enables gene functional enrichment analysis of parasitic protozoans. In addition to supporting FEA analysis, ProFun also allows the comparison of FEA results across complicated experimental designs. 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引用次数: 0
摘要
背景从比较多组学研究中解读推测生物功能的第一步通常是从差异表达基因列表开始,然后是功能富集分析(FEA)。然而,大多数功能富集分析软件包都是专为人类和模式生物设计的。虽然寄生原生动物是热带地区最重要的病原体,但目前还没有用于原生动物功能(ProFun)富集分析的 FEA 软件包。为了加快寄生原生动物的多组学比较研究,我们为研究界构建了一个基于网络、用户友好的平台--ProFun。方法ProFun利用Docker容器、ShinyProxy和R Shiny构建了一个具有负载平衡基础设施的可扩展网络服务。我们整合了一系列可视化分析功能、内部脚本和定制注释包,为40种原生动物创建了三个分析模块:(1)基因重叠;(2)过度呈现分析(ORA);(3)基因组富集分析(GSEA)。只需将基因 ID 列表粘贴到我们网站的文本框中,富集分析就变得非常简单。用户只需点击一下,就能定制富集参数和结果。直观的网络界面和可供发表的图表使用户能够揭示有意义的生物事件,并为进一步研究确定潜在的目标。除了支持有限元分析外,ProFun 还可以比较不同复杂实验设计的有限元分析结果。ProFun 可在 http://dalek.cgu.edu.tw:8080/app/profun 免费获取。
ProFun: A web server for functional enrichment analysis of parasitic protozoan genes
Background
The initial step to interpreting putative biological functions from comparative multi-omics studies usually starts from a differential expressed gene list followed by functional enrichment analysis (FEA). However, most FEA packages are designed exclusively for humans and model organisms. Although parasitic protozoan is the most important pathogen in the tropics, no FEA package is available for protozoan functional (ProFun) enrichment analysis. To speed up comparative multi-omics research on parasitic protozoans, we constructed ProFun, a web-based, user-friendly platform for the research community.
Methods
ProFun utilizes the Docker container, ShinyProxy, and R Shiny to construct a scalable web service with load-balancing infrastructure. We have integrated a series of visual analytic functions, in-house scripts, and custom-made annotation packages to create three analytical modules for 40 protozoan species: (1) Gene Overlaps; (2) Over-representation Analysis (ORA); (3) Gene Set Enrichment Analysis (GSEA).
Results
We have established ProFun, a web server for functional enrichment analysis of differentially expressed genes. FEA becomes as simple as pasting a list of gene IDs into the textbox of our website. Users can customize enrichment parameters and results with just one click. The intuitive web interface and publication-ready charts enable users to reveal meaningful biological events and pinpoint potential targets for further studies.
Conclusion
ProFun is the first web application that enables gene functional enrichment analysis of parasitic protozoans. In addition to supporting FEA analysis, ProFun also allows the comparison of FEA results across complicated experimental designs. ProFun is freely available at http://dalek.cgu.edu.tw:8080/app/profun.
期刊介绍:
Journal of Microbiology Immunology and Infection is an open access journal, committed to disseminating information on the latest trends and advances in microbiology, immunology, infectious diseases and parasitology. Article types considered include perspectives, review articles, original articles, brief reports and correspondence.
With the aim of promoting effective and accurate scientific information, an expert panel of referees constitutes the backbone of the peer-review process in evaluating the quality and content of manuscripts submitted for publication.