Sase Shohei, Kakimoto Ryo, Kimura Ryutaro, Goto Kei
Department of Chemistry, Graduate School of Science and Engineering, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8551, Japan.
Molecules. 2015 Dec 2;20(12):21415-20. doi: 10.3390/molecules201219773.
A primary-alkyl-substituted selenenyl iodide was successfully synthesized through oxidative iodination of a selenol with N-iodosuccinimide by taking advantage of a cavity-shaped steric protection group. The selenenyl iodide exhibited high thermal stability and remained unchanged upon heating at 100 °C for 3 h in [D₈]toluene. The selenenyl iodide was reduced to the corresponding selenol by treatment with dithiothreitol. Hydrolysis of the selenenyl iodide under alkaline conditions afforded the corresponding selenenic acid almost quantitatively, corroborating the chemical validity of the recent proposal that hydrolysis of a selenenyl iodide to a selenenic acid is potentially involved in the catalytic mechanism of an iodothyronine deiodinase.
通过利用腔状空间保护基团,用N - 碘代琥珀酰亚胺对硒醇进行氧化碘化反应,成功合成了一种伯烷基取代的硒基碘化物。该硒基碘化物表现出高热稳定性,在[D₈]甲苯中于100℃加热3小时后保持不变。用二硫苏糖醇处理可将硒基碘化物还原为相应的硒醇。在碱性条件下硒基碘化物的水解几乎定量地得到相应的亚硒酸,这证实了最近提出的硒基碘化物水解为亚硒酸可能参与碘甲状腺原氨酸脱碘酶催化机制的化学合理性。