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通过59Co和23Na核磁共振研究Co(NH3)6(3+)与Na+与螺旋B-DNA的竞争相互作用。

Competitive interactions of Co(NH3)6(3+) and Na+ with helical B-DNA probed by 59Co and 23Na NMR.

作者信息

Braunlin W H, Anderson C F, Record M T

机构信息

Department of Chemistry, University of Wisconsin, Madison 53706.

出版信息

Biochemistry. 1987 Dec 1;26(24):7724-31. doi: 10.1021/bi00398a028.

DOI:10.1021/bi00398a028
PMID:3427101
Abstract

59Co NMR is demonstrated to provide a useful probe of the interactions of Co(NH3)6(3+) with helical B-DNA. The association of Co(NH3)6(3+) with B-DNA produces relatively modest effects on the relaxation rate and chemical shift of 59Co, which indicate that the octahedral coordination shell remains intact and that no significant number of long-lived "outer-sphere" complexes are formed at specific sites on the DNA surface. Under conditions where essentially all of the cobalt complex is associated with DNA, the chemical shift of 59Co appears to depend on its binding density. This effect could be due to magnetic heterogeneity in the environments of Co(NH3)6(3+) adjacent to DNA. The local exchange reaction between Co(NH3)6(3+) and Na+ in the vicinity of DNA has been investigated by measuring 59Co chemical shifts and 23Na line widths concurrently. The number of sodium ions displaced by the association of one Co(NH3)6(3+) with DNA cannot be uniquely determined, but the data indicate that this number remains constant over at least the initial stage of a titration of NaDNA with NaCl. 59Co chemical shifts have been analyzed to construct binding isotherms for the association of cobalt hexaammine with DNA over a range of salt (NaCl) concentrations. The magnitudes of the resulting binding constants and their salt dependence are similar to those previously reported for the association of structurally diverse trivalent ligands, such as spermidine and trilysine, with helical nucleic acids. Therefore, these association equilibria appear to be governed primarily by electrostatic interactions.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

59Co核磁共振被证明是研究Co(NH3)6(3+)与螺旋B-DNA相互作用的有用探针。Co(NH3)6(3+)与B-DNA的结合对59Co的弛豫速率和化学位移产生相对较小的影响,这表明八面体配位层保持完整,且在DNA表面的特定位置没有形成大量长寿命的“外层”配合物。在基本上所有钴配合物都与DNA结合的条件下,59Co的化学位移似乎取决于其结合密度。这种效应可能是由于与DNA相邻的Co(NH3)6(3+)环境中的磁不均匀性所致。通过同时测量59Co化学位移和23Na线宽,研究了DNA附近Co(NH3)6(3+)与Na+之间的局部交换反应。一个Co(NH3)6(3+)与DNA结合所取代的钠离子数量无法唯一确定,但数据表明,在至少用NaCl滴定NaDNA的初始阶段,这个数量保持不变。已分析59Co化学位移,以构建在一系列盐(NaCl)浓度下钴六氨与DNA结合的结合等温线。所得结合常数的大小及其对盐的依赖性与先前报道的结构多样的三价配体(如亚精胺和三赖氨酸)与螺旋核酸结合的情况相似。因此,这些结合平衡似乎主要由静电相互作用控制。(摘要截短于250字)

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