Radiation-Induced Molecular Processes in DNA: A Perspective on Gas-Phase Interaction Studies

被引:1
作者
Schlatholter, Thomas [1 ,2 ]
Poully, Jean-Christophe [3 ]
机构
[1] Univ Groningen, Zernike Inst Adv Mat, Nijenborgh 4, NL-9747 AG Groningen, Netherlands
[2] Univ Groningen, Univ Coll Groningen, Hoendiepskade 23-24, NL-9718 BG Groningen, Netherlands
[3] Univ Caen Normandie, CIMAP, CEA, CNRS,ENSICAEN,UMR 6252, F-14070 Caen, France
基金
欧盟地平线“2020”;
关键词
Oligonucleotides; mass spectrometry; gas-phase reactions; time resolved spectroscopy; DNA structures; X-ray absorption spectroscopy; photoelectron spectroscopy; X-RAY-ABSORPTION; MASS-SPECTROMETRY; SHELL SPECTROSCOPY; DISSOCIATION; IONIZATION; FRAGMENTATION; DYNAMICS;
D O I
10.1002/chem.202400633
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Studying the direct effects of DNA irradiation is essential for understanding the impact of radiation on biological systems. Gas-phase interactions are especially well suited to uncover the molecular mechanisms underlying these direct effects. Only relatively recently, isolated DNA oligonucleotides were irradiated by ionizing particles such as VUV or X-ray photons or ion beams, and ionic products were analyzed by mass spectrometry. This article provides a comprehensive review of primarily experimental investigations in this field over the past decade, emphasizing the description of processes such as ionization, fragmentation, charge and hydrogen transfer triggered by photoabsorption or ion collision, and the recent progress made thanks to specific atomic photoabsorption. Then, we outline ongoing experimental developments notably involving ion-mobility spectrometry, crossed beams or time-resolved measurements. The discussion extends to potential research directions for the future. This perspective explores the technical developments towards crossed-beam studies of ionizing radiation with mass-selected and conformationally pure beams of oligonucleotide ions. It reviews key developments in the field and highlights challenges. The relevance of expected future results as benchmarks for quantum chemical calculations and for multiscale-modelling of radiation therapy is outlined. image
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页数:9
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