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核糖核苷酸与2'-脱氧核糖核苷酸酸碱性质的比较。

Comparison of the acid-base properties of ribose and 2'-deoxyribose nucleotides.

作者信息

Mucha Ariel, Knobloch Bernd, Jezowska-Bojczuk Małgorzata, Kozłowski Henryk, Sigel Roland K O

机构信息

Institute of Inorganic Chemistry, University of Zürich, Winterthurerstrasse 190, Zürich, Switzerland.

出版信息

Chemistry. 2008;14(22):6663-71. doi: 10.1002/chem.200800496.

Abstract

The extent to which the replacement of a ribose unit by a 2'-deoxyribose unit influences the acid-base properties of nucleotides has not hitherto been determined in detail. In this study, by potentiometric pH titrations in aqueous solution, we have measured the acidity constants of the 5'-di- and 5'-triphosphates of 2'-deoxyguanosine [i.e., of H(2)(dGDP)(-) and H(2)(dGTP)(2-)] as well as of the 5'-mono-, 5'-di-, and 5'-triphosphates of 2'-deoxyadenosine [i.e., of H(2)(dAMP)(+/-), H(2)(dADP)(-), and H(2)(dATP)(2-)]. These 12 acidity constants (of the 56 that are listed) are compared with those of the corresponding ribose derivatives (published data) measured under the same experimental conditions. The results show that all protonation sites in the 2'-deoxynucleotides are more basic than those in their ribose counterparts. The influence of the 2'-OH group is dependent on the number of 5'-phosphate groups as well as on the nature of the purine nucleobase. The basicity of N7 in guanine nucleotides is most significantly enhanced (by about 0.2 pK units), while the effect on the phosphate groups and the N1H or N1H(+) sites is less pronounced but clearly present. In addition, (1)H NMR chemical shift change studies in dependence on pD in D(2)O have been carried out for the dAMP, dADP, and dATP systems, which confirmed the results from the potentiometric pH titrations and showed the nucleotides to be in their anti conformations. Overall, our results are not only of relevance for metal ion binding to nucleotides or nucleic acids, but also constitute an exact basis for the calculation, determination, and understanding of perturbed pK(a) values in DNAzymes and ribozymes, as needed for the delineation of acid-base mechanisms in catalysis.

摘要

核糖单元被2'-脱氧核糖单元取代对核苷酸酸碱性质的影响程度,迄今尚未得到详细测定。在本研究中,我们通过水溶液中的电位pH滴定,测量了2'-脱氧鸟苷的5'-二磷酸和5'-三磷酸(即H₂(dGDP)⁻和H₂(dGTP)²⁻)以及2'-脱氧腺苷的5'-单磷酸、5'-二磷酸和5'-三磷酸(即H₂(dAMP)⁺/⁻、H₂(dADP)⁻和H₂(dATP)²⁻)的酸度常数。将这些列出的56个酸度常数中的12个,与在相同实验条件下测量的相应核糖衍生物的酸度常数(已发表数据)进行了比较。结果表明,2'-脱氧核苷酸中的所有质子化位点比其核糖对应物中的更具碱性。2'-OH基团的影响取决于5'-磷酸基团的数量以及嘌呤核苷碱基的性质。鸟嘌呤核苷酸中N7的碱性增强最为显著(约0.2个pK单位),而对磷酸基团和N1H或N1H⁺位点的影响则不太明显,但确实存在。此外,还对dAMP、dADP和dATP体系进行了依赖于D₂O中pD的¹H NMR化学位移变化研究,证实了电位pH滴定的结果,并表明核苷酸处于其反式构象。总体而言,我们的结果不仅与金属离子与核苷酸或核酸的结合有关,而且为计算、测定和理解DNA酶和核酶中扰动的pKₐ值构成了精确基础,这是描绘催化作用中的酸碱机制所必需的。

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