Hasan A, Li H, Tomasz J, Shaw B R
Department of Chemistry, P.M. Gross Chemical Laboratory, Duke University, Durham, NC 27708-0346, USA.
Nucleic Acids Res. 1996 Jun 1;24(11):2150-7. doi: 10.1093/nar/24.11.2150.
Boron-modified nucleic acids comprise a new set of DNA mimics that have potential biological and therapeutic applications. A series of nine dinucleotides containing N7-cyanoborane-2'-deoxyguanosine ((7b)dG) at the 3', 5' or both positions of the phosphodiester linkage have been synthesized using solution phase phosphoramidite chemistry. Fmoc was used as the 5'-protecting group because of incompatibility of the cyanoborane moiety with 5'-DMT cations generated during the deprotection step. The presence of the cyanoborane group was confirmed on the basis of Fab-MS and 1H NMR spectroscopy. The H-8 proton of (7b)dG in the dinucleotides shifted 0.35-0.80 p.p.m. downfield relative to that of unmodified dG. A comparison of the D20 exchange kinetics of the H-8 proton at 60 degrees C showed that H-8 of (7b)dG is very labile relative to unmodified dG, indicating that the N7-cyanoborane modification increases the acidity of the H-8 proton of (7b)dG. These studies illustrate the feasibility of synthesizing boron-containing oligonucleotides which are modified at the N7-guanine to block Hoogsteen pairing in the DNA major groove.
硼修饰的核酸构成了一组新的DNA模拟物,具有潜在的生物学和治疗应用。使用溶液相亚磷酰胺化学合成了一系列九个二核苷酸,这些二核苷酸在磷酸二酯键的3'、5'或两个位置含有N7-氰基硼烷-2'-脱氧鸟苷((7b)dG)。由于氰基硼烷部分与脱保护步骤中产生的5'-DMT阳离子不相容,因此使用Fmoc作为5'-保护基团。基于快原子轰击质谱(Fab-MS)和1H核磁共振光谱(1H NMR)证实了氰基硼烷基团的存在。与未修饰的dG相比,二核苷酸中(7b)dG的H-8质子的化学位移向低场移动了0.35 - 0.80 ppm。在60℃下对H-8质子的D2O交换动力学进行比较表明,相对于未修饰的dG,(7b)dG的H-8非常不稳定,这表明N7-氰基硼烷修饰增加了(7b)dG的H-8质子的酸度。这些研究说明了合成在N7-鸟嘌呤处修饰以阻断DNA大沟中Hoogsteen配对的含硼寡核苷酸的可行性。