Knobloch Bernd, Sigel Helmut, Okruszek Andrzej, Sigel Roland K O
Institute of Inorganic Chemistry, University of Zürich, Winterthurerstrasse 190, 8057 Zürich, Switzerland.
Chemistry. 2007;13(6):1804-14. doi: 10.1002/chem.200600744.
The interaction between divalent metal ions and nucleic acids is well known, yet knowledge about the strength of binding of labile metal ions at the various sites is very scarce. We have therefore studied the stabilities of complexes formed between the nucleic acid model d(pGpG) and the essential metal ions Mg2+ and Zn2+ as well as with the generally toxic ions Cd2+ and Pb2+ by potentiometric pH titrations; all four ions are of relevance in ribozyme chemistry. A comparison of the present results with earlier data obtained for M(pUpU)- complexes allows the conclusion that phosphate-bound Mg2+ and Cd2+ form macrochelates by interaction with N7, whereas the also phosphate-coordinated Pb2+ forms a 10-membered chelate with the neighboring phosphate diester bridge. Zn2+ forms both types of chelates with formation degrees of about 91% and 2.4% for Zn[d(pGpG)]cl/N7 and Zn[d(pGpG)]-cl/PO, respectively; the open form with Zn2+ bound only to the terminal phosphate group, Zn[d(pGpG)]-op, amounts to about 6.8 %. The various intramolecular equilibria have also been quantified for the other metal ions. Zn2+, Cu2+, and Cd2+ also form macrochelates in the monoprotonated M[H;d(pGpG)] species (the proton being at the terminal phosphate group), that is, the metal ion at N7 interacts to some extent with the P(O)2(OH)- group. Thus, this study demonstrates that the coordinating properties of the various metal ions toward a pGpG unit in a nucleic acid differ: Mg2+, Zn2+, and Cd2+ have a significant tendency to bridge the distance between N7 and the phosphate group of a (d)GMP unit, although to various extents, whereas Pb2+ (and possibly Ca2+) prefer a pure phosphate coordination.
二价金属离子与核酸之间的相互作用是众所周知的,但关于不稳定金属离子在各个位点的结合强度的知识却非常匮乏。因此,我们通过电位滴定法研究了核酸模型d(pGpG)与必需金属离子Mg2+和Zn2+以及一般有毒离子Cd2+和Pb2+形成的配合物的稳定性;这四种离子在核酶化学中都具有相关性。将目前的结果与早期获得的M(pUpU)-配合物的数据进行比较,可以得出结论:与磷酸根结合的Mg2+和Cd2+通过与N7相互作用形成大环螯合物,而同样与磷酸根配位的Pb2+则与相邻的磷酸二酯桥形成一个10元螯合物。Zn2+形成两种类型的螯合物,对于Zn[d(pGpG)]cl/N7和Zn[d(pGpG)]-cl/PO,其形成度分别约为91%和2.4%;仅与末端磷酸基团结合的开放形式Zn[d(pGpG)]-op约占6.8%。对于其他金属离子,各种分子内平衡也已被量化。Zn2+、Cu2+和Cd2+在单质子化的M[H;d(pGpG)]物种(质子位于末端磷酸基团)中也形成大环螯合物,即N7处的金属离子在一定程度上与P(O)2(OH)-基团相互作用。因此,本研究表明,各种金属离子对核酸中pGpG单元的配位性质不同:Mg2+、Zn2+和Cd2+有显著的倾向桥接N7与(d)GMP单元的磷酸基团之间的距离,尽管程度不同,而Pb2+(可能还有Ca2+)更喜欢纯粹的磷酸根配位。