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含交替硫代磷酸酯键的d(GC)和d(CG)八聚体的合成:硫代磷酸酯基团对B-Z转变的影响

Synthesis of d(GC) and d(CG) octamers containing alternating phosphorothioate linkages: effect of the phosphorothioate group on the B-Z transition.

作者信息

Cosstick R, Eckstein F

出版信息

Biochemistry. 1985 Jul 2;24(14):3630-8. doi: 10.1021/bi00335a035.

Abstract

The synthesis of four oligonucleotides containing alternating phosphorothioate groups, (Rp)-and (Sp)-d[G(p(S)CpG)3p(S)C] and (Rp)- and (Sp)-d[C(p(S)GpC)p(S)G], by the phosphite approach is described. Silica gel to which 2'(3')-O-acetyluridine and 5'-succinyl groups were bound served as support for oligomer synthesis. The syntheses were carried out by dimer addition with presynthesized diastereomerically pure dinucleoside phosphorothioates as building blocks. The products were characterized by 31P NMR, nuclease P1 digestion, and oxidation to the corresponding all-phosphate-containing oligomers. The ability of each oligomer to adopt the Z conformation under high-salt conditions was screened for by circular dichroism spectroscopy. Both (Rp)-d[G(p(S)CpG)3p(S)C] and (Sp)-d[C(p(S)GpC)3p(S)G] are capable of forming Z-type structures at high NaCl concentrations. In the case of (Rp)-d[G(p(S)CpG)3p(S)C] where a phosphorothioate of the Rp configuration occurs 5' to a deoxycytidine residue, the B----Z transition is potentiated in comparison to the unmodified oligomer. (Sp)-d[G(p(S)CpG)3p(S)C] and (Rp)-d[C(p(S)GpC)3p(S)G] retain the B conformation even at high NaCl concentration.

摘要

本文描述了通过亚磷酸酯法合成四种含有交替硫代磷酸酯基团的寡核苷酸,即(Rp)-和(Sp)-d[G(p(S)CpG)3p(S)C]以及(Rp)-和(Sp)-d[C(p(S)GpC)p(S)G]。将2'(3')-O-乙酰尿苷和5'-琥珀酰基连接到硅胶上,作为寡聚物合成的支持物。合成过程通过以预先合成的非对映体纯二核苷硫代磷酸酯为构建块进行二聚体加成来实现。产物通过31P NMR、核酸酶P1消化以及氧化为相应的全磷酸化寡聚物进行表征。通过圆二色光谱法筛选了每种寡聚物在高盐条件下形成Z构象的能力。(Rp)-d[G(p(S)CpG)3p(S)C]和(Sp)-d[C(p(S)GpC)3p(S)G]在高NaCl浓度下都能够形成Z型结构。对于(Rp)-d[G(p(S)CpG)3p(S)C],其中Rp构型的硫代磷酸酯出现在脱氧胞苷残基的5'端,与未修饰的寡聚物相比,B→Z转变得到增强。(Sp)-d[G(p(S)CpG)3p(S)C]和(Rp)-d[C(p(S)GpC)3p(S)G]即使在高NaCl浓度下也保持B构象。

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