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DNA-金属络合物的拉曼光谱。I. 二价阳离子:镁、钙、锶、钡、锰、钴、镍、铜、钯和镉的相互作用及构象效应

Raman spectroscopy of DNA-metal complexes. I. Interactions and conformational effects of the divalent cations: Mg, Ca, Sr, Ba, Mn, Co, Ni, Cu, Pd, and Cd.

作者信息

Duguid J, Bloomfield V A, Benevides J, Thomas G J

机构信息

Department of Biochemistry, University of Minnesota, St. Paul 55108.

出版信息

Biophys J. 1993 Nov;65(5):1916-28. doi: 10.1016/S0006-3495(93)81263-3.

Abstract

Interactions of divalent metal cations (Mg2+, Ca2+, Ba2+, Sr2+, Mn2+, Co2+, Ni2+, Cu2+, Pd2+, and Cd2+) with DNA have been investigated by laser Raman spectroscopy. Both genomic calf-thymus DNA (> 23 kilobase pairs) and mononucleosomal fragments (160 base pairs) were employed as targets of metal interaction in solutions containing 5 weight-% DNA and metal:phosphate molar ratios of 0.6:1. Raman difference spectra reveal that transition metal cations (Mn2+, Co2+, Ni2+, Cu2+, Pd2+, and Cd2+) induce the greatest structural changes in B-DNA. The Raman (vibrational) band differences are extensive and indicate partial disordering of the B-form backbone, reduction in base stacking, reduction in base pairing, and specific metal interaction with acceptor sites on the purine (N7) and pyrimidine (N3) rings. Many of the observed spectral changes parallel those accompanying thermal denaturation of B-DNA and suggest that the metals link the bases of denatured DNA. While exocyclic carbonyls of dT, dG, and dC may stabilize metal ligation, correlation plots show that perturbations of the carbonyls are mainly a consequence of metal-induced denaturation of the double helix. Transition metal interactions with the DNA phosphates are weak in comparison to interactions with the bases, except in the case of Cu2+, which strongly perturbs both base and phosphate group vibrations. On the other hand, the Raman signature of B-DNA is largely unperturbed by Mg2+, Ca2+, Sr2+, and Ba2+, suggesting much weaker interactions of the alkaline earth metals with both base and phosphate sites. A notable exception is a moderate perturbation by alkaline earths of purine N7 sites in 160-base pair DNA, with Ca2+ causing the greatest effect. Correlation plots demonstrate a strong interrelationship between perturbations of Raman bands assigned to ring vibrations of the bases and those of bands assigned to exocyclic carbonyls and backbone phosphodiester groups. However, strong correlations do not occur between the Raman phosphodioxy band (centered near 1092 cm-1) and other Raman bands, suggesting that the former is not highly sensitive to the structural changes induced by divalent metal cations. The structural perturbations induced by divalent cations are much greater for > 23-kilobase pair DNA than for 160-base pair DNA, as evidenced by both the Raman difference spectra and the tendency toward the formation of insoluble aggregates. In the presence of transition metals, aggregation of high-molecular-weight DNA is evident at temperatures as low as 11 degrees C. A relationship between DNA melting and aggregation is proposed in which initial metal binding at major groove sites locally destabilizes the B-DNA double helix, causing displacement of the bases away from one another and exposing additional metal binding sites. Metal cation linkage of two displaced bases would allow separate DNA strands to crosslink. Aggregation is proposed to result from the formation of an extended network of these crosslinks.

摘要

利用激光拉曼光谱研究了二价金属阳离子(Mg2+、Ca2+、Ba2+、Sr2+、Mn2+、Co2+、Ni2+、Cu2+、Pd2+和Cd2+)与DNA的相互作用。基因组小牛胸腺DNA(>23千碱基对)和单核小体片段(160碱基对)均被用作金属相互作用的靶标,溶液中DNA含量为5重量%,金属与磷酸根的摩尔比为0.6:1。拉曼差光谱显示,过渡金属阳离子(Mn2+、Co2+、Ni2+、Cu2+、Pd2+和Cd2+)在B-DNA中引起的结构变化最大。拉曼(振动)带差异广泛,表明B型主链部分无序、碱基堆积减少、碱基配对减少,以及金属与嘌呤(N7)和嘧啶(N3)环上的受体位点发生特异性相互作用。许多观察到的光谱变化与B-DNA热变性时的变化相似,表明金属连接了变性DNA的碱基。虽然dT、dG和dC的环外羰基可能稳定金属配位,但相关图表明,羰基的扰动主要是金属诱导双螺旋变性的结果。与碱基相互作用相比,过渡金属与DNA磷酸根的相互作用较弱,Cu2+除外,它强烈干扰碱基和磷酸基团的振动。另一方面,Mg2+、Ca2+、Sr2+和Ba2+对B-DNA的拉曼特征影响不大,表明碱土金属与碱基和磷酸位点的相互作用要弱得多。一个显著的例外是,碱土金属对160碱基对DNA中嘌呤N7位点有适度扰动,其中Ca2+的影响最大。相关图表明,分配给碱基环振动的拉曼带与分配给环外羰基和主链磷酸二酯基团的拉曼带的扰动之间存在很强的相互关系。然而,拉曼磷酸二氧基带(中心位于1092 cm-1附近)与其他拉曼带之间没有强相关性,这表明前者对二价金属阳离子诱导的结构变化不太敏感。二价阳离子诱导的结构扰动在>23千碱基对DNA中比在160碱基对DNA中要大得多,拉曼差光谱和形成不溶性聚集体的趋势都证明了这一点。在过渡金属存在下,高分子量DNA在低至11摄氏度的温度下就明显聚集。提出了DNA解链与聚集之间的关系,其中金属最初在大沟位点的结合会局部破坏B-DNA双螺旋的稳定性,导致碱基相互分离并暴露出额外的金属结合位点。两个分离碱基的金属阳离子连接将允许分开的DNA链交联。聚集被认为是由这些交联形成的扩展网络导致的。

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