Thaden J, Miller P S
Department of Biochemistry, Johns Hopkins University School of Hygiene and Public Health, Baltimore, Maryland 21205.
Bioconjug Chem. 1993 Sep-Oct;4(5):395-401. doi: 10.1021/bc00023a015.
To provide a solid support for automated synthesis of 3'-(aminoalkyl)-modified oligonucleoside methylphosphonates, controlled pore glass beads were functionalized with a protected N-(3-aminoprop-1-yl)-N-(2-hydroxyethyl)-2-aminoethyl ester of succinic acid. This "Aha-CPG" was used for automated synthesis of oligo-2'-deoxyribonucleoside methylphosphonates having either of two distinct 3' terminal modifications. If the first coupling to the beads was of a base-protected 5'-(dimethoxytrityl)-2'-deoxyribonucleoside 3'-(beta-cyanoethyl N,N-diisopropylphosphoramidite) synthon, then, upon completion of methylphosphonate oligomer synthesis and deprotection, the 3'-[N-(3-aminoprop-1-yl)-N-(2-hydroxyethyl)-2-aminoethyl] phosphate] derivative of an oligonucleoside methylphosphonate was produced and was shown to be a stable structure which affords a primary alkylamine group suitable as a site for further conjugations. If the first coupling was of a 5'-(dimethoxytrityl)-2'-deoxyribonucleoside 3'-(N,N-diisopropylmethylphosphonamidite) synthon, the initial product of synthesis and deprotection underwent a spontaneous, regiospecific ester cleavage in aqueous solution to produce an oligonucleoside methylphosphonate 3'-(methylphosphonate). An application of the Aha-CPG to the synthesis of rhodamine-conjugated oligonucleoside methylphosphonates is described in a companion paper [Thaden, J. and Miller, P. S. (1993) Bioconjugate Chem., preceding paper in this issue].
为3'-(氨基烷基)修饰的寡核苷酸甲基膦酸酯的自动化合成提供坚实支持,用琥珀酸的受保护的N-(3-氨基丙-1-基)-N-(2-羟乙基)-2-氨基乙酯对可控孔径玻璃珠进行功能化。这种“Aha-CPG”用于自动化合成具有两种不同3'末端修饰之一的寡聚2'-脱氧核糖核苷甲基膦酸酯。如果与珠子的首次偶联是碱基保护的5'-(二甲氧基三苯甲基)-2'-脱氧核糖核苷3'-(β-氰基乙基N,N-二异丙基磷酰胺)合成子,那么,在甲基膦酸酯低聚物合成和脱保护完成后,会产生寡核苷酸甲基膦酸酯的3'-[N-(3-氨基丙-1-基)-N-(2-羟乙基)-2-氨基乙基]磷酸酯衍生物,并且显示为一种稳定结构,其提供了适合作为进一步缀合位点的伯烷基胺基团。如果首次偶联是5'-(二甲氧基三苯甲基)-2'-脱氧核糖核苷3'-(N,N-二异丙基甲基膦酰胺)合成子,合成和脱保护的初始产物在水溶液中会发生自发的区域特异性酯裂解,生成寡核苷酸甲基膦酸酯3'-(甲基膦酸酯)。一篇配套论文[萨登,J.和米勒,P.S.(1993年)《生物缀合物化学》,本期之前的论文]中描述了Aha-CPG在罗丹明缀合的寡核苷酸甲基膦酸酯合成中的应用。