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Stabilization of double-stranded oligonucleotides using backbone-linked disulfide bridges.

机译:使用主链连接的二硫键稳定双链寡核苷酸。

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A convenient, practical route to the synthesis of disulfide-bridged oligonucleotides has been developed. Aliphatic linkers with terminal thiol groups have been attached to the phosphodiester backbones of partially or fully complementary oligonucleotide sequences and oxidized to yield covalently closed oligonucleotides with disulfide bridges. This procedure has been used to prepare a duplex with disulfide bridges at both ends and stem-loop sequences with single disulfide bridges. Oxidation of a self-complementary duplex possessing terminal thiol groups produced both hairpin and duplex structures with disulfide bridges, the relative proportions of each being dependent upon the reaction conditions. These bridged hairpin and duplex structures were shown to be interconvertible by reduction and re-oxidation. The melting profiles of disulfide-bridged oligonucleotides were compared with the same sequences without bridges and with sequences possessing triethylene glycol bridges, and in all cases the introduction of disulfide bridges resulted in a considerable increase in thermal stability. EcoRI endonuclease was capable of cleaving a disulfide-bridged duplex possessing a recognition site for this enzyme, thus supporting a lack of distortion of the recognition site. The disulfide bridges could be cleaved using a large excess of DTT to regenerate the corresponding sulfhydryl compounds. A study of the serum stabilities of disulfide-bridged oligonucleotides showed that the bridged duplexes were much more stable than their unmodified counterparts, whereas the rate of degradation of the stem-loop structures was more dependent upon the size of the loop than the presence or absence of the disulfide bridge. In summary, we have described a novel methodology, employing commercially available reagents, for the stabilization of oligonucleotide duplexes or stem-loop structures by disulfide bridge formation.
机译:已经开发了合成二硫键桥接的寡核苷酸的方便,实用的途径。具有末端硫醇基团的脂肪族接头已经连接到部分或完全互补的寡核苷酸序列的磷酸二酯主链上,并被氧化以产生具有二硫键的共价封闭的寡核苷酸。该程序已用于制备两端带有二硫键的双链体和带有单个二硫键的茎环序列。具有末端硫醇基团的自互补双链体的氧化产生了具有二硫键的发夹结构和双链体结构,每种的相对比例取决于反应条件。这些桥接的发夹和双链体结构通过还原和再氧化显示为可相互转化的。将二硫键桥接的寡核苷酸的熔解曲线与没有桥键和具有三甘醇桥键的序列进行了比较,在所有情况下,引入二硫键导致了热稳定性的显着提高。 EcoRI核酸内切酶能够裂解具有该酶识别位点的二硫键桥接的双链体,从而支持识别位点的缺失。可以使用大量过量的DTT裂解二硫键,以再生相应的巯基化合物。对二硫键连接的寡核苷酸的血清稳定性的研究表明,桥连的双链体比未修饰的双链体稳定得多,而茎-环结构的降解速率更取决于环的大小,而不是是否存在的二硫键。总之,我们已经描述了一种新颖的方法,采用可商购的试剂,通过二硫键形成来稳定寡核苷酸双链体或茎环结构。

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