Mass Spectral Library for DNA Adductomics
Scott J Walmsley1,2, Jingshu Guo2,3,4, Anamary Tarifa5
1Institute for Health Informatics, University of Minnesota, Minneapolis, Minnesota 55455, United States.
Abstract:
Endogenous electrophiles, ionizing and non-ionizing radiation, and hazardous chemicals present in the environment and diet can damage DNA by forming covalent adducts. DNA adducts can form in critical cancer driver genes and, if not repaired, may induce mutations during cell division, potentially leading to the onset of cancer. The detection and quantification of specific DNA adducts are some of the first steps in studying their role in carcinogenesis, the physiological conditions that lead to their production, and the risk assessment of exposure to specific genotoxic chemicals. Hundreds of different DNA adducts have been reported in the literature, and there is a critical need to establish a DNA adduct mass spectral database to facilitate the detection of previously observed DNA adducts and characterize newly discovered DNA adducts. We have collected synthetic DNA adduct standards from the research community, acquired MSn (n = 2, 3) fragmentation spectra using Orbitrap and Quadrupole-Time-of-Flight (Q-TOF) MS instrumentation, processed the spectral data and incorporated it into the MassBank of North America (MoNA) database, and created a DNA adduct portal Web site (https://sites.google.com/umn.edu/dnaadductportal) to serve as a central location for the DNA adduct mass spectra and metadata, including the spectral database downloadable in different formats. This spectral library should prove to be a valuable resource for the DNA adductomics community, accelerating research and improving our understanding of the role of DNA adducts in disease.
Insights
DNA adducts, formed by environmental factors, can cause cancer if unrepaired. A new spectral database and portal aid in detecting and characterizing these DNA adducts to advance cancer research.
Area of Science:
- Environmental Health
- Molecular Biology
- Toxicology
Background:
- DNA adducts form from endogenous electrophiles, radiation, and environmental chemicals.
- Unrepaired DNA adducts in critical genes can lead to mutations and cancer.
- Accurate detection and quantification of DNA adducts are crucial for understanding carcinogenesis and risk assessment.
Purpose of the Study:
- To establish a comprehensive DNA adduct mass spectral database.
- To facilitate the detection and characterization of known and novel DNA adducts.
- To create a centralized resource for the DNA adductomics research community.
Main Methods:
- Collected synthetic DNA adduct standards from researchers.
- Acquired mass spectrometry (MS) fragmentation spectra using Orbitrap and Q-TOF instruments.
- Processed spectral data and integrated it into the MassBank of North America (MoNA) database.
- Developed a DNA adduct portal website for data access and download.
Main Results:
- A downloadable spectral library of DNA adducts has been created.
- The DNA adduct portal serves as a central repository for mass spectra and metadata.
- The database facilitates the identification of previously observed and new DNA adducts.
Conclusions:
- The developed spectral library and portal are valuable resources for DNA adductomics research.
- This initiative accelerates research into the role of DNA adducts in disease.
- Improved understanding of DNA adducts will enhance disease risk assessment and prevention strategies.
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