Rastogi H, Usher D A
Department of Chemistry, Cornell University, Ithaca, NY 14853, USA.
Nucleic Acids Res. 1995 Dec 11;23(23):4872-7. doi: 10.1093/nar/23.23.4872.
We have developed a new type of 2'-hydroxyl protecting group for the automated machine synthesis of RNA oligomers: a 2-hydroxyisophthalate formaldehyde acetal (HIFA). The unique feature of this protecting group is that, as the bis ester, it is relatively stable to the acidic conditions that are used for repeated removal of dimethoxytrityl groups during chain elongation, but the final deprotection step in alkali, which cleaves the chain from the support and removes the base and phosphate protecting groups, converts it to the bis carboxylate and this can be removed relatively rapidly by treatment with mild acid. Conversion of the bis ester to the bis carboxylic acid increases the rate of acid-catalyzed hydrolysis of the acetal by 42-fold at pH 1, and, possibly, by 1320-fold at pH 3. The bis ester is 112 times more stable than the 1-(2-fluorophenyl)-4-methoxypiperidin-4-yl group (Fpmp) towards hydrolysis at pH 1, while the bis acid is only 2.35 times more stable than Fpmp at pH 3. In synthesis of the dimers UpU and UpG, with a coupling time of 5 min, the dimethoxytrityl cation assay indicated coupling yields of > 98%.
我们已经开发出一种用于RNA寡聚物自动化机器合成的新型2'-羟基保护基团:2-羟基间苯二甲酸甲醛缩醛(HIFA)。该保护基团的独特之处在于,作为双酯,它对链延伸过程中用于重复去除二甲氧基三苯甲基的酸性条件相对稳定,但在碱中的最终脱保护步骤会将其从载体上裂解链并去除碱基和磷酸保护基团,使其转化为双羧酸盐,并且通过用温和酸处理可以相对快速地去除。在pH 1时,双酯转化为双羧酸会使缩醛的酸催化水解速率提高42倍,在pH 3时可能提高1320倍。在pH 1时,双酯在水解方面比1-(2-氟苯基)-4-甲氧基哌啶-4-基(Fpmp)基团稳定112倍,而在pH 3时双酸仅比Fpmp稳定2.35倍。在合成二聚体UpU和UpG时,偶联时间为5分钟,二甲氧基三苯甲基阳离子测定表明偶联产率>98%。