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精胺与多核苷酸相互作用的停流氢氘交换动力学研究。

A stopped-flow H-D exchange kinetic study of spermine-polynucleotide interactions.

作者信息

Basu H S, Shafer R H, Marton L J

出版信息

Nucleic Acids Res. 1987 Jul 24;15(14):5873-86. doi: 10.1093/nar/15.14.5873.

Abstract

The rates of H-D exchange for imino and amino protons in adenosine, calf thymus DNA, poly (dA-dT), poly(dG-dC), and poly (dG-me5dC) were determined using stopped flow kinetic methods in the presence of various concentrations of Tris, imidazole, Mg2+, and spermine in citrate buffer (pH 7, 25 degrees C). CD spectroscopic studies showed that all polynucleotides always remain in the B-form under these conditions. An increase in the concentration of Tris and imidazole from 5 mu M to 20 mM caused an increase in the rates of exchange of both fast-exchanging imino and slow-exchanging amino protons. The limiting rates of exchange at infinite concentrations of catalysts were found to be different for fast (31-57 sec-1) and slow (1-2 sec-1) exchanging protons. These results indicate that imino and amino protons of B-DNA exchange asymmetrically from two different open states as observed for Z-DNA. An increase in the concentration of spermine from a ratio of 1:50 to 1:2 of positive charge/phosphate decreased the rate of exchange of imino protons of calf-thymus DNA, poly(dG-dC), and poly(dG-me5dC), but increased the rate of exchange of the imino protons of poly(dA-dT) without affecting the exchange rate of the amino protons of any of the polynucleotides. These results are interpreted in terms of possible spermine-induced change of conformations of oligonucleotides of specific sequence that has been suggested by theoretical model building studies.

摘要

在柠檬酸盐缓冲液(pH 7,25℃)中,存在不同浓度的Tris、咪唑、Mg2+和精胺的情况下,使用停流动力学方法测定了腺苷、小牛胸腺DNA、聚(dA-dT)、聚(dG-dC)和聚(dG-me5dC)中亚氨基和氨基质子的H-D交换速率。圆二色光谱研究表明,在这些条件下,所有多核苷酸始终保持B型。Tris和咪唑浓度从5μM增加到20 mM会导致快速交换的亚氨基和缓慢交换的氨基质子的交换速率增加。发现对于快速(31 - 57秒-1)和缓慢(1 - 2秒-1)交换的质子,在催化剂无限浓度下的极限交换速率不同。这些结果表明,B-DNA的亚氨基和氨基质子从两个不同的开放状态不对称地交换,正如在Z-DNA中观察到的那样。精胺的浓度从正电荷/磷酸的1:50增加到1:2会降低小牛胸腺DNA、聚(dG-dC)和聚(dG-me5dC)中亚氨基质子的交换速率,但会增加聚(dA-dT)中亚氨基质子的交换速率,而不影响任何多核苷酸中氨基质子的交换速率。这些结果根据理论模型构建研究提出的精胺诱导特定序列寡核苷酸构象变化来解释。

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