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EPR Study of UV-irradiated Thymidine Microcrystals Supports Radical Intermediates in Spore Photoproduct Formation

机译:紫外线照射的胸腺嘧啶微晶的EPR研究支持孢子光产物形成中的自由基中间体

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摘要

Spore photoproduct is a thymidine dimer formed when bacterial endospore DNA is exposed to ultraviolet (UV) radiation. The mechanism of formation of this thymidine dimer has been proposed to proceed through a radical-pair intermediate. The intermediate forms when a methyl-group hydrogen atom of one thymidine nucleobase is transferred to the C6 position of an adjacent thymidine nucleobase, forming two species, the TCH2 and TH radicals, respectively. Using a series of thymidine isotopologues and electron paramagnetic resonance (EPR) spectroscopy, we show that microcrystals of thymidine exposed to UV radiation produce these two radical species. We observe three sources that donate the additional hydrogen at the C6 position of the TH radical. One of the three sources is the methyl group of another thymidine molecule in a significant fraction of the TH species. This lends support to the radical-pair intermediate proposed in the formation of spore photoproduct.
机译:孢子光产物是当细菌内生孢子DNA暴露于紫外线(UV)辐射时形成的胸苷二聚体。已经提出该胸苷二聚体的形成机理是通过自由基对中间体进行的。当一个胸苷核苷碱基的甲基氢原子转移到相邻的胸苷核苷碱基的C6位置时,形成中间体,分别形成两种物质TCH2和TH自由基。使用一系列的胸腺嘧啶同位素和电子顺磁共振(EPR)光谱,我们显示暴露于UV辐射的胸腺嘧啶微晶会产生这两个自由基。我们观察到三个来源在TH自由基的C6位上提供了额外的氢。这三种来源之一是另一种胸腺嘧啶核苷分子的甲基,占TH物质的很大一部分。这为在孢子光产物的形成中提出的自由基对中间体提供了支持。

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