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Site-specific cleavage of duplex DNA by a semisynthetic nuclease via triple-helix formation.

机译:半合成核酸酶通过三螺旋形成对双链DNA进行位点特异性切割。

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摘要

A Lys-84----Cys mutant staphylococcal nuclease was selectively linked to the 5' and/or 3' terminus of a thiol-containing polypyrimidine oligonucleotide via a disulfide bond. The oligonucleotide-staphylococcal nuclease adduct is capable of binding to a homopurine-homopyrimidine region of Watson-Crick duplex DNA by the formation of a triple-helical structure. Upon the addition of Ca2+, the nuclease cleaves DNA at sites adjacent to the homopurine tract. Specific double-strand cleavage occurred predominantly at A + T-rich sites to the 5' side of the homopurine tract for both the 5'-derivatized and the 5',3'-diderivatized nucleases; the 3'-derivatized nuclease gave no cleavage. The cleavage pattern is asymmetric and consists of multiple cleavage sites shifted to the 5' side on each strand, centered at the terminal base pair of the binding site. Microgram amounts of plasmid pDP20 DNA (4433 base pairs) containing a homopurine-homopyrimidine tract were selectively cleaved by a semisynthetic nuclease with greater than 75% efficiency at room temperature within 1 hr. Cleavage reaction conditions were optimized with respect to pH, temperature, reaction times, and reaction components. Semisynthetic nucleases of this type should provide a powerful tool in chromosomal DNA manipulations.
机译:Lys-84 ---- Cys突变葡萄球菌核酸酶通过二硫键选择性地连接到含硫醇的聚嘧啶寡核苷酸的5'和/或3'末端。寡核苷酸-葡萄球菌核酸酶加合物能够通过形成三螺旋结构而与Watson-Crick双链DNA的高嘌呤-高嘧啶区结合。加入Ca 2+时,核酸酶在与高嘌呤束相邻的位点切割DNA。 5'-衍生的和5',3'-衍生的核酸酶的特异性双链切割主要发生在高纯嘌呤通道5'侧的富含A + T的位点; 3'-衍生的核酸酶没有裂解。切割模式是不对称的,并且由多个切割位点组成,这些切割位点移至每条链的5'侧,以结合位点的末端碱基对为中心。含高嘌呤-高嘧啶区的微克量质粒pDP20 DNA(4433个碱基对)在室温下1小时内被半合成核酸酶以大于75%的效率选择性切割。关于pH,温度,反应时间和反应组分优化了裂解反应条件。这种类型的半合成核酸酶应为染色体DNA操作提供强大的工具。

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