Department of Chemistry, Johns Hopkins University , 3400 North Charles Street, Baltimore, Maryland 21218, United States.
Department of Chemistry, Oakland University , Rochester, Michigan 48309, United States.
Org Lett. 2017 Dec 1;19(23):6444-6447. doi: 10.1021/acs.orglett.7b03368. Epub 2017 Nov 10.
Photochemical precursors that produce dA and dG(N-H) are needed to investigate their reactivity. The synthesis of two 1,1-diphenylhydrazines (1, 2) and their use as photochemical sources of dA and dG(N-H) is presented. Trapping studies indicate production of these radicals with good fidelity, and 1 was incorporated into an oligonucleotide via solid-phase synthesis. Cyclic voltammetric studies show that reduction potentials of 1 and 2 are lower than those of widely used "hole sinks", e.g., 8-oxodGuo and 7-deazadGuo, to investigate DNA-hole transfer processes. These molecules could be useful (a) as sources of dA and dG(N-H) at specific sites in oligonucleotides and (b) as "hole sinks" for the study of DNA-hole transfer processes.
需要光化学前体来产生 dA 和 dG(N-H),以研究它们的反应性。本文介绍了两种 1,1-二苯基肼(1,2)的合成及其作为 dA 和 dG(N-H)光化学源的用途。捕获研究表明,这些自由基具有良好的保真度,并且 1 通过固相合成被掺入到寡核苷酸中。循环伏安研究表明,1 和 2 的还原电位低于广泛使用的“空穴阱”,例如 8-氧代 dGuo 和 7-脱氮 dGuo,以研究 DNA 空穴转移过程。这些分子可能有用:(a) 在寡核苷酸的特定位置作为 dA 和 dG(N-H)的来源;(b) 作为 DNA 空穴转移过程研究的“空穴阱”。