Ruiz-Moreno Angel J, Del Castillo-Izquierdo Ángela, Tamargo-Rubio Isabel, Fu Jingyuan
Department of Genetics, University Medical Center Groningen, Groningen, 9713GZ, The Netherlands.
Department of Pediatrics, University Medical Center Groningen, Groningen, 9713GZ, The Netherlands.
Microbiome. 2025 Mar 19;13(1):78. doi: 10.1186/s40168-025-02070-5.
The gut microbiome functions as a metabolic organ, producing numerous enzymes that influence host health; however, their substrates and metabolites remain largely unknown.
We present MicrobeRX, an enzyme-based metabolite prediction tool that employs 5487 human reactions and 4030 unique microbial reactions from 6286 genome-scale models, as well as 3650 drug metabolic reactions from the DrugBank database (v.5.1.12). MicrobeRX includes additional analysis modules for metabolite visualization and enzymatic and taxonomic analyses. When we applied MicrobeRX to 1083 orally administered drugs that have been approved in at least one jurisdiction at some point in time (DrugBank), it predicted metabolites with physicochemical properties and structures similar to metabolites found in biosamples (from MiMeDB). It also outperformed another existing metabolite prediction tool (BioTransformer 3.0) in terms of predictive potential, molecular diversity, reduction of redundant predictions, and enzyme annotation.
Our analysis revealed both unique and overlapping metabolic capabilities in human and microbial metabolism and chemo- and taxa-specific microbial biotransformations. MicrobeRX bridges the genomic and chemical spaces of the gut microbiome, making it a valuable tool for unlocking the chemical potential of the gut microbiome in human health, the food and pharmaceutical industries, and environmental safety. Video Abstract.
肠道微生物群作为一个代谢器官发挥作用,产生许多影响宿主健康的酶;然而,它们的底物和代谢产物在很大程度上仍然未知。
我们展示了MicrobeRX,这是一种基于酶的代谢物预测工具,它利用了来自6286个基因组规模模型的5487个人类反应和4030个独特的微生物反应,以及来自DrugBank数据库(v.5.1.12)的3650个药物代谢反应。MicrobeRX包括用于代谢物可视化以及酶学和分类学分析的附加分析模块。当我们将MicrobeRX应用于1083种在某个时间点至少在一个司法管辖区获得批准的口服药物(来自DrugBank)时,它预测的代谢物的物理化学性质和结构与生物样品(来自MiMeDB)中发现的代谢物相似。在预测潜力、分子多样性、减少冗余预测和酶注释方面,它也优于另一种现有的代谢物预测工具(BioTransformer 3.0)。
我们的分析揭示了人类和微生物代谢中独特和重叠的代谢能力以及化学和分类群特异性的微生物生物转化。MicrobeRX架起了肠道微生物群的基因组和化学空间之间的桥梁,使其成为在人类健康、食品和制药行业以及环境安全领域释放肠道微生物群化学潜力的宝贵工具。视频摘要。