首页> 外文期刊>The Journal of Organic Chemistry >SYNTHESIS OF PHOSPHORODITHIOATE DNA VIA SULFUR-LINKED, BASE-LABILE PROTECTING GROUPS
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SYNTHESIS OF PHOSPHORODITHIOATE DNA VIA SULFUR-LINKED, BASE-LABILE PROTECTING GROUPS

机译:通过硫连接的碱基-保护基团合成磷酸硫代磷酸酯DNA

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Phosphorodithioate DNA, a new and potentially useful DNA analog with a deoxynucleoside-OPS2O-deoxynucleoside internucleotide linkage, was synthesized from deoxynucleoside 3'-phosphorothio-amidites having a variety of thioesters and thiocarbonates as base-labile phosphorus protecting groups. The major challenge in the synthesis of this DNA analog was to derive a reaction pathway whereby activation of deoxynucleoside 3'-phosphorothioamidites occurred rapidly and in high yield under conditions that minimize Arbuzov rearrangements, exchange reactions, unwanted oxidation to phosphorothioates, and several other side reactions. Of the various phosphorus protecting groups examined for this purpose, a thorough evaluation of these parameters led to the conclusion that beta-(benzoylmercapto)ethyl was preferred. Synthesis of phosphorodithioate DNA began by preparing deoxynucleoside 3'-phosphorothioamidites from the appropriately protected deoxynucleoside, tris(pyrrolidino)phosphine, and ethanedithiol monobenzoate via a one-flask synthesis procedure. These synthons were activated with tetrazole and condensed with a deoxynucleoside on a polymer support to yield the deoxynucleoside thiophosphite. Subsequent steps involved oxidation with sulfur to generate the completely protected phosphorodithioate triester, acylation of unreacted deoxynucleoside, and removal of the 5'-protecting group. Yields per cycle were usually 97-98% with 2-5% phosphorothioate contamination as determined by P-31 NMR. By using deoxynucleoside 3'-phosphorothioamidites and deoxynucleoside 3'-phosphoroamidites, deoxyoligonucleotides having phosphorodithioate and the natural phosphate internucleotide linkages in any predetermined order can also be synthesized. [References: 47]
机译:磷酸二硫代磷酸酯是具有脱氧核苷-OPS2O-脱氧核苷核苷间键合的一种新型且潜在有用的DNA类似物,由具有多种硫酯和硫代碳酸酯作为对碱基不稳定的磷保护基团的脱氧核苷3'-磷硫代酰胺基合成。合成这种DNA类似物的主要挑战是要建立一个反应途径,在最小化Arbuzov重排,交换反应,不希望的氧化为硫代磷酸酯和其他一些副反应的条件下,脱氧核苷3'-磷硫代酰胺的活化迅速且高收率地发生。 。在为此目的检查的各种磷保护基中,对这些参数的透彻评估得出结论,β-(苯甲酰基巯基)乙基是优选的。二硫代磷酸酯DNA的合成开始于通过一瓶合成程序,从适当保护的脱氧核苷,三(吡咯烷基)膦和乙二硫醇单苯甲酸酯制备脱氧核苷3'-磷硫代酰胺。这些合成子用四唑活化,并与脱氧核苷在聚合物载体上缩合,得到脱氧核苷硫代亚磷酸酯。随后的步骤包括用硫氧化以生成完全保护的二硫代磷酸三酯,未反应的脱氧核苷的酰化作用以及5'-保护基的去除。通过P-31 NMR测定,每个周期的收率通常为97-98%,其中有2-5%的硫代磷酸酯污染。通过使用脱氧核苷3'-磷硫代酰胺和脱氧核苷3'-磷亚酰胺,也可以合成具有任何预定顺序的二硫代磷酸酯和天然磷酸核苷酸间键的脱氧寡核苷酸。 [参考:47]

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