The Natural Products Magnetic Resonance Database (NP-MRD) for 2025

数据库 谱线 原始数据 核磁共振谱数据库 计算机科学 核磁共振 生物 物理 天文 程序设计语言
作者
David S. Wishart,Tanvir Sajed,Matthew Pin,Ella F Poynton,Bharat Goel,Brian L. Lee,An Chi Guo,Sukanta Saha,Zinat Sayeeda,Scott Han,Mark Berjanskii,Harrison Peters,Eponine Oler,Vasuk Gautam,Tamara Jordan,Jonghyeok Kim,Benjamin Ledingham,Zachary M. Tretter,James T. Koller,Hailey A. Shreffler
出处
期刊:Nucleic Acids Research [Oxford University Press]
卷期号:53 (D1): D700-D708 被引量:27
标识
DOI:10.1093/nar/gkae1067
摘要

The Natural Products Magnetic Resonance Database (NP-MRD; https://np-mrd.org) is a comprehensive, freely accessible, web-based resource for the deposition, distribution, extraction, and retrieval of nuclear magnetic resonance (NMR) data on natural products (NPs). The NP-MRD was initially established to support compound de-replication and data dissemination for the NP community. However, that community has now grown to include many users from the metabolomics, microbiomics, foodomics, and nutrition science fields. Indeed, since its launch in 2022, the NP-MRD has expanded enormously in size, scope, and popularity. The current version of NP-MRD now contains nearly 7× more compounds (281 859 versus 40 908) and 7× more NMR spectra (5.5 million versus 817 278) than the first release. More specifically, an additional 4.6 million predicted spectra and another 11 000 spectra simulated from experimental chemical shifts were deposited into the database. Likewise, the number of NMR raw spectral data depositions has grown from 165 spectra per year to >10 000 per year. As a result of this expansion, the number of monthly webpage views has grown from 55 to 20 000 and the number of monthly visitors has increased from 7 to 2500. To address this growth and to better support the expanding needs of its diverse community of users, many additional improvements to the NP-MRD have been made. These include significant enhancements to the data submission process, notable updates to the database's spectral search utilities and useful additions to support better NMR spectral analysis/prediction. Significant efforts have also been undertaken to remediate and update many of NP-MRD's database entries. This manuscript describes these database improvements and expansion efforts, along with how they have been implemented and what future upgrades to the NP-MRD are planned.
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