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The dependence of DNase I activity on the conformation of oligodeoxynucleotides.

机译:DNase I活性对寡聚脱氧核苷酸构象的依赖性。

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摘要

We have developed a sensitive continuous assay for nucleases using proton release. The assay has been applied to the determination of the kinetics of DNase I acting on short, defined deoxyoligonucleotides. The dependence of Kcat/K(m) on sequence and structure of short oligonucleotide substrates has been measured: increasing lengths of AnTn sequences decrease the rate of cleavage. G.A mismatches in which the bases pair using imino protons are cleaved quite effectively by DNase I. In contrast, tandem G.A mismatches which use amino pairing and have BII phosphodiesters, are refractory to DNase I. Also, the DNA strands of DNA.RNA hybrid duplexes are not cleaved by DNase I. These results show that the global conformation of a duplex and the details of its minor groove affect the cleavage efficiency by DNase I. The assay has also been used to measure the inhibition constant of the minor-groove-binding ligand propamidine. A value of 3 microM has been determined for binding to the sequence d(CGCGAATTCGCG)2, showing that dissociation constants can be determined even when there are no convenient optical signals for titrations.
机译:我们已经开发了使用质子释放的核酸酶敏感连续测定方法。该测定法已用于确定作用于短而确定的脱氧寡核苷酸的DNase I的动力学。已测量Kcat / K(m)对短寡核苷酸底物的序列和结构的依赖性:AnTn序列长度的增加会降低切割速率。 GA错配(其中使用亚氨基质子的碱基对被DNase I相当有效地裂解)。相反,使用氨基配对并具有BII磷酸二酯的串联GA错配对DNase I无效。这些结果表明双链体的整体构象及其小沟的细节会影响DNase I的切割效率。该测定法也已用于测量小沟结合的抑制常数配体丙am。已确定与序列d(CGCGAATTCGCG)2结合的值为3 microM,这表明即使没有方便的滴定光学信号也可以确定解离常数。

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