Weller Rachel L, Rajski Scott R
Department of Chemistry, University of Wisconsin, Madison, Wisconsin 53705, USA.
Org Lett. 2005 May 26;7(11):2141-4. doi: 10.1021/ol0504749.
[reaction: see text]. Biological methylation plays a vital role in regulatory mechanisms of gene transcription. Methylation of both promoter sequences within the genome, as well as protein substrates, has a profound impact upon gene transcription. Yet, few tools exist by which to identify sites of biological methylation in complex biological mixtures. We have generated a novel adenosine-derived N-mustard that serves as an efficient synthetic cofactor and allows for subsequent "click" chemistry involving the modified nucleic acid substrate.
[反应:见正文]。生物甲基化在基因转录的调控机制中起着至关重要的作用。基因组内启动子序列以及蛋白质底物的甲基化对基因转录有着深远影响。然而,用于识别复杂生物混合物中生物甲基化位点的工具却很少。我们已经合成了一种新型的源自腺苷的N-芥子气,它可作为一种有效的合成辅因子,并能实现涉及修饰核酸底物的后续“点击”化学。