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Published on: March 5, 2022
m7GHub V2.0: an updated database for decoding the N7-methylguanosine (m7G) epitranscriptome
Xuan Wang1,2, Yuxin Zhang2,3, Kunqi Chen4
1Department of Public Health, School of Medicine & Holistic Integrative Medicine, Nanjing University of Chinese Medicine, Nanjing 210023, China.
m7GHub v.2.0 is an updated database resource for N7-methylguanosine (m7G) RNA modifications. It offers a comprehensive collection of m7G sites and disease-associated variants across multiple species, aiding epitranscriptome research.
Area of Science:
- RNA epigenetics
- Molecular biology
- Bioinformatics
Background:
- N7-methylguanosine (m7G) RNA modification plays a crucial role in biological processes and disease pathogenesis.
- Tens of thousands of m7G sites have been identified, highlighting the need for integrated data resources.
- Previous m7GHub database focused solely on human mRNA m7G sites.
Purpose of the Study:
- To present m7GHub v.2.0, an expanded and updated resource for m7G modifications.
- To provide a comprehensive collection of m7G sites and associated variants across multiple species and RNA types.
- To facilitate sharing, annotation, and customized analysis of m7G data.
Main Methods:
- Integrated data from next-generation sequencing (NGS) and Oxford Nanopore direct RNA sequencing (ONT).
- Curated m7G sites into m7GDB (430,898 sites in 23 species).
- Collected m7G-associated variants and disease-relevant m7G-SNPs into m7GDiseaseDB (156,206 variants, 3,238 m7G-SNPs).
- Developed enhanced analysis modules: m7GFinder and m7GSNPer.
Main Results:
- m7GHub v.2.0 now includes a m7GDB with 430,898 putative m7G sites across 23 species.
- m7GDiseaseDB hosts 156,206 m7G-associated variants, including 3,238 disease-relevant m7G-SNPs.
- Enhanced analysis modules (m7GFinder, m7GSNPer) enable interactive data exploration.
Conclusions:
- m7GHub v.2.0 serves as a valuable centralized resource for m7G modification studies.
- The expanded database facilitates research into the role of m7G in various physiological and disease contexts.
- Freely accessible at www.rnamd.org/m7GHub2, promoting wider scientific engagement.
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