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偏振 XANES 监测飞秒结构演化的光激发维生素 B。

Polarized XANES Monitors Femtosecond Structural Evolution of Photoexcited Vitamin B.

机构信息

Department of Chemistry, University of Michigan , 930 N University Avenue, Ann Arbor, Michigan 48109-1055, United States.

Biophysics, University of Michigan , 930 N University Avenue, Ann Arbor, Michigan 48109-1055, United States.

出版信息

J Am Chem Soc. 2017 Feb 8;139(5):1894-1899. doi: 10.1021/jacs.6b11295. Epub 2017 Jan 30.

Abstract

Ultrafast, polarization-selective time-resolved X-ray absorption near-edge structure (XANES) was used to characterize the photochemistry of vitamin B, cyanocobalamin (CNCbl), in solution. Cobalamins are important biological cofactors involved in methyl transfer, radical rearrangement, and light-activated gene regulation, while also holding promise as light-activated agents for spatiotemporal controlled delivery of therapeutics. We introduce polarized femtosecond XANES, combined with UV-visible spectroscopy, to reveal sequential structural evolution of CNCbl in the excited electronic state. Femtosecond polarized XANES provides the crucial structural dynamics link between computed potential energy surfaces and optical transient absorption spectroscopy. Polarization selectivity can be used to uniquely identify electronic contributions and structural changes, even in isotropic samples when well-defined electronic transitions are excited. Our XANES measurements reveal that the structural changes upon photoexcitation occur mainly in the axial direction, where elongation of the axial Co-CN bond and Co-N bond on a 110 fs time scale is followed by corrin ring relaxation on a 260 fs time scale. These observations expose features of the potential energy surfaces controlling cobalamin reactivity and deactivation.

摘要

超快、偏振选择性的时间分辨 X 射线吸收近边结构(XANES)被用于研究维生素 B12,氰钴胺素(CNCbl)在溶液中的光化学性质。钴胺素是一类重要的生物辅因子,参与甲基转移、自由基重排和光激活基因调控等过程,同时也有望作为光激活剂,用于时空控制递药。我们引入了偏振飞秒 XANES,结合紫外可见光谱,来揭示 CNCbl 在激发电子态下的顺序结构演化。飞秒偏振 XANES 为计算势能面和光瞬态吸收光谱之间提供了关键的结构动力学联系。偏振选择性可用于在激发明确的电子跃迁时,即使在各向同性样品中,也能唯一地识别电子贡献和结构变化。我们的 XANES 测量结果表明,光激发后的结构变化主要发生在轴向方向,轴向 Co-CN 键和 Co-N 键在 110 fs 时间尺度上的伸长,随后是在 260 fs 时间尺度上的 corrin 环弛豫。这些观察结果揭示了控制钴胺素反应性和失活的势能面特征。

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