Hasan A, Tomasz J, Shaw B R
Department of Chemistry, P. M. Gross Chemical Laboratory, Duke University, Durham, North Carolina 27708-0346, USA.
Bioconjug Chem. 1997 Nov-Dec;8(6):813-8. doi: 10.1021/bc9701205.
The cyanoborane (-BH2CN) nucleosides and nucleotides are a new class of compounds that mimic natural and synthetic congeners in many ways and exhibit interesting biochemical and biophysical properties. The B-N bond is isoelectronic with the C-N+ bond of N7-alkylated 2'-nucleosides, as well as the C-C bond of naturally occurring 7-alkyl-7-deazanucleosides. These compounds differ from normal guanosine in that they are incapable of hydrogen bonding at the 7-position. The syntheses of N7-cyanoborane 2'-deoxyguanosine, N2-(dimethylaminomethylene)-N7-cyanoborane 5'-(dimethoxytrityl)-2'-deoxyguanosine (3), and N2-isobutyryl-N7-cyanoborane 5'-(dimethoxytrityl)-2'-deoxyguanosine (9) are described. Removal of the dimethoxytrityl (DMT) group from 3 or 9 is accompanied by significant loss of the cyanoborane moiety. Additionally, dimethoxytritylation of a cyanoboronated nucleoside leads to partial deboronation, thus limiting use of the commercially available 5'-DMT nucleosides as viable precursors in base-boronated oligonucleotide synthesis. The incompatibility of the cyanoborane moiety under DMT removal/addition conditions necessitated the search for an alternative method of protecting the 5'-hydroxyl of the nucleoside. This paper addresses the possible cause of deboronation and describes the synthesis of N7-cyanoboronated nucleosides by a method that avoids transient protection of the sugar hydroxyls.
氰硼烷(-BH2CN)核苷和核苷酸是一类新型化合物,在许多方面模拟天然和合成的同类物,并表现出有趣的生化和生物物理性质。B-N键与N7-烷基化2'-核苷的C-N+键以及天然存在的7-烷基-7-脱氮核苷的C-C键等电子。这些化合物与正常鸟苷的不同之处在于它们在7位不能形成氢键。本文描述了N7-氰硼烷2'-脱氧鸟苷、N2-(二甲基氨基亚甲基)-N7-氰硼烷5'-(二甲氧基三苯甲基)-2'-脱氧鸟苷(3)和N2-异丁酰基-N7-氰硼烷5'-(二甲氧基三苯甲基)-2'-脱氧鸟苷(9)的合成。从3或9中除去二甲氧基三苯甲基(DMT)基团会伴随着氰硼烷部分的显著损失。此外,氰硼烷化核苷的二甲氧基三苯甲基化会导致部分脱硼,因此限制了市售5'-DMT核苷作为碱基硼化寡核苷酸合成中可行前体的使用。氰硼烷部分在DMT去除/添加条件下的不相容性使得有必要寻找一种保护核苷5'-羟基的替代方法。本文探讨了脱硼的可能原因,并描述了一种避免糖羟基瞬时保护的方法合成N7-氰硼烷化核苷。