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DNA中桥连5'-S-硫代磷酸酯键的化学和酶学性质

Chemical and enzymatic properties of bridging 5'-S-phosphorothioester linkages in DNA.

作者信息

Xu Y, Kool E T

机构信息

Department of Chemistry, University of Rochester, Rochester, NY 14627, USA.

出版信息

Nucleic Acids Res. 1998 Jul 1;26(13):3159-64. doi: 10.1093/nar/26.13.3159.

Abstract

We describe physicochemical and enzymatic properties of 5' bridging phosphorothioester linkages at specific sites in DNA oligonucleotides. The susceptibility to hydrolysis at various pH values is examined and no measurable hydrolysis is observed at pH 5-9 after 4 days at 25 degrees C. The abilities of three 3'- and 5'-exonuclease enzymes to hydrolyze the DNA past this linkage are examined and it is found that the linkage causes significant pauses at the sulfur linkage for T4 DNA polymerase and calf spleen phosphodiesterase, but not for snake venom phosphodiesterase. Restriction endonuclease (Nsi I) cleavage is also attempted at a 5'-thioester junction and strong resistance to cleavage is observed. Also tested is the ability of polymerase enzymes to utilize templates containing single 5'-S-thioester linkages; both Klenow DNA polymerase and T7 RNA polymerase are found to synthesize complementary strands successfully without any apparent pause at the sulfur linkage. Finally, the thermal stabilities of duplexes containing such linkages are measured; results show that T m values are lowered by a small amount (2 degrees C) when one or two thioester linkages are present in an otherwise unmodified duplex. The chemical stability and surprisingly small perturbation by the 5' bridging sulfur make it a good candidate as a physical and mechanistic probe for specific protein or metal interactions involving this position in DNA.

摘要

我们描述了DNA寡核苷酸特定位点处5'桥连硫代磷酸酯键的物理化学和酶学性质。研究了在不同pH值下的水解敏感性,在25℃下放置4天后,在pH 5 - 9范围内未观察到可测量的水解现象。检测了三种3'和5'外切核酸酶水解通过该键的DNA的能力,发现该键对T4 DNA聚合酶和小牛脾磷酸二酯酶在硫键处造成显著停顿,但对蛇毒磷酸二酯酶没有影响。还尝试在5'-硫酯连接处进行限制性内切酶(Nsi I)切割,观察到对切割有很强的抗性。还测试了聚合酶利用含有单个5'-S-硫酯键的模板的能力;发现Klenow DNA聚合酶和T7 RNA聚合酶都能成功合成互补链,在硫键处没有明显停顿。最后,测量了含有此类键的双链体的热稳定性;结果表明,在其他未修饰的双链体中存在一个或两个硫酯键时,熔解温度(Tm)值会小幅降低(2℃)。5'桥连硫的化学稳定性以及令人惊讶的小干扰使其成为研究涉及DNA中该位置的特定蛋白质或金属相互作用的物理和机制探针的良好候选者。

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