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核碱基及其硫代类似物的时间分辨X射线光谱学。

Time-resolved x-ray spectroscopy of nucleobases and their thionated analogs.

作者信息

Mayer Dennis, Lever Fabiano, Gühr Markus

机构信息

Deutsches Elektronen-Synchrotron DESY, Hamburg, Germany.

Institute of Physical Chemistry, University of Hamburg, Hamburg, Germany.

出版信息

Photochem Photobiol. 2024 Mar-Apr;100(2):275-290. doi: 10.1111/php.13903. Epub 2024 Jan 4.

Abstract

The photoinduced relaxation dynamics of nucleobases and their thionated analogs have been investigated extensively over the past decades motivated by their crucial role in organisms and their application in medical and biochemical research and treatment. Most of these studies focused on the spectroscopy of valence electrons and fragmentation. The advent of ultrashort x-ray laser sources such as free-electron lasers, however, opens new opportunities for studying the ultrafast molecular relaxation dynamics utilizing the site- and element-selectivity of x-rays. In this review, we want to summarize ultrafast experiments on thymine and 2-thiouracil performed at free-electron lasers. We performed time-resolved x-ray absorption spectroscopy at the oxygen K-edge after UV excitation of thymine. In addition, we investigated the excited state dynamics of 2-tUra via x-ray photoelectron spectroscopy at sulfur. For these methods, we show a strong sensitivity to the electronic state or charge distribution, respectively. We also performed time-resolved Auger-Meitner spectroscopy, which shows spectral shifts associated with internuclear distances close to the probed site. We discuss the complementary aspects of time-resolved x-ray spectroscopy techniques compared to optical and UV spectroscopy for the investigation of ultrafast relaxation processes.

摘要

在过去几十年中,由于核碱基及其硫代类似物在生物体中的关键作用以及它们在医学和生化研究与治疗中的应用,人们对其光致弛豫动力学进行了广泛研究。这些研究大多集中在价电子光谱和碎片化方面。然而,诸如自由电子激光等超短X射线激光源的出现,为利用X射线的位点和元素选择性研究超快分子弛豫动力学带来了新机遇。在本综述中,我们想总结在自由电子激光上对胸腺嘧啶和2-硫尿嘧啶进行的超快实验。我们在胸腺嘧啶紫外激发后,在氧K边进行了时间分辨X射线吸收光谱实验。此外,我们通过硫的X射线光电子能谱研究了2-硫尿嘧啶的激发态动力学。对于这些方法,我们分别展示了对电子态或电荷分布的强敏感性。我们还进行了时间分辨俄歇-迈特纳光谱实验,该实验显示出与靠近探测位点的核间距相关的光谱位移。我们讨论了时间分辨X射线光谱技术与光学和紫外光谱相比,在研究超快弛豫过程方面的互补性。

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