首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Extent of metal ion-sulfur binding in complexes of thiouracil nucleosides and nucleotides in aqueous solution
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Extent of metal ion-sulfur binding in complexes of thiouracil nucleosides and nucleotides in aqueous solution

机译:水溶液中硫氧嘧啶核苷和核苷酸复合物中金属离子与硫的结合程度

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Previously published stability constants of several metal ion (M2+) complexes formed with thiouridines and their 5'-monophosphates, together with recently obtained log K-M(U)(M) versus pK(U)(H) plots for M2+ complexes of uridinate derivatives (U-) allowed now a quantitative evaluation of the effect that the exchange of a (C)O by a (C)S group has on the stability of the corresponding complexes. For example, the stability of the Ni2+, Cu2+ and Cd2+ complexes of 2-thiouridinate is increased by about 1.6, 2.3, and 1.3 log units, respectively, by the indicated exchange of groups. Similar results were obtained for other thiouridinates, including 4-thiouridinate. The structure of these complexes and the types of chelates formed (involving (N3)(-) and (C)S) are discussed. A recently advanced method for the quantification of the chelate effect allows now also an evaluation of several complexes of thiouridinate 5'-monophosphates. In most instances the thiouracilate coordination dominates the systems, allowing only the formation of small amounts of phosphate-bound isomers. Among the complexes studied only the one formed by Cu2+ with 2-thiouridinate 5'-monophosphate leads to significant amounts of the macrochelated isomer, which means that in this case Cu2+ is able to force the nucleotide from the anti to the syn conformation, allowing thus metal ion binding to both potential sites and this results in the formation of about 58% of the macrochelated isomer. The remaining 42% are species in which Cu2+ is overwhelmingly coordinated to the thiouracilate residue; Cu2+ binding to the phosphate group occurs in this case only in trace amounts. (c) 2007 Elsevier Inc. All rights reserved.
机译:先前发布的几种与硫代尿苷及其5'-单磷酸盐形成的金属离子(M2 +)配合物的稳定性常数,以及最近获得的尿酸衍生物M2 +配合物的log KM(U)(M)与pK(U)(H)图U-)现在允许定量评估(C)S基团交换(C)O对相应配合物稳定性的影响。例如,通过所示的基团交换,2-硫代尿din酸盐的Ni 2+,Cu 2+和Cd 2+配合物的稳定性分别增加了约1.6、2.3和1.3log单位。其他硫代尿uri酸盐,包括4-硫代尿din酸盐也获得了相似的结果。讨论了这些络合物的结构和形成的螯合物类型(涉及(N3)(-)和(C)S)。定量螯合效应的最新先进方法现在也可以评估硫脲标记的5'-单磷酸酯的几种配合物。在大多数情况下,硫脲酸酯配位体占主导地位,仅形成少量磷酸盐结合的异构体。在研究的络合物中,只有Cu2 +与2-硫代尿din酸酯5'-单磷酸酯形成的络合物会导致大量的大螯合异构体,这意味着在这种情况下Cu2 +能够迫使核苷酸从反构象变为顺式构象,因此金属离子结合到两个潜在的位点上,这导致约58%的大螯合异构体形成。其余的42%是其中Cu2 +与硫尿嘧啶残基绝大多数配位的物种。在这种情况下,Cu2 +与磷酸酯基的结合仅以痕量出现。 (c)2007 Elsevier Inc.保留所有权利。

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