Department of Chemistry and Biochemistry, University of Colorado , Boulder, Colorado 80303, United States.
Department of Basic Sciences and Humanities, National Institute of Technology, Manipur , Langol, Imphal, 795004 Manipur, India.
J Org Chem. 2017 Feb 3;82(3):1420-1427. doi: 10.1021/acs.joc.6b02599. Epub 2017 Jan 18.
The synthesis of previously unknown derivatives of boranephosphonate that contain amine substitutions at boron and the incorporation of these derivatives into the backbone of DNA oligonucleotides is described. These derivatives result from iodine-mediated replacement of one BH hydride of a boranephosphonate linkage by pyridine, various substituted pyridines, other aromatic amines, and certain unsaturated amines. Oligonucleotides containing these backbone modifications show enhanced uptake, relative to unmodified DNA, in mammalian cells. The redox behavior of the boranephosphonate and pyridinium boranephosphonate conjugated linkages has also been studied.
本文描述了先前未知的硼膦酸盐衍生物的合成,这些衍生物在硼原子上含有胺取代基,并被整合到 DNA 寡核苷酸的主链中。这些衍生物是通过碘介导的取代反应得到的,反应中硼磷键的一个 BH 氢被吡啶、各种取代吡啶、其他芳香胺和某些不饱和胺取代。与未修饰的 DNA 相比,含有这些主链修饰的寡核苷酸在哺乳动物细胞中的摄取量增加。还研究了硼膦酸盐和吡啶硼膦酸盐共轭键的氧化还原行为。