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首页> 外文期刊>European journal of inorganic chemistry >Metal Ion-Coordinating Properties in Aqueous Solutions of the Antivirally Active Nucleotide Analogue (S)-9-[3-Hydroxy-2-(phosphonomethoxy)propyl]adenine (HPMPA) - Quantification of Complex Isomeric Equilibria
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Metal Ion-Coordinating Properties in Aqueous Solutions of the Antivirally Active Nucleotide Analogue (S)-9-[3-Hydroxy-2-(phosphonomethoxy)propyl]adenine (HPMPA) - Quantification of Complex Isomeric Equilibria

机译:抗病毒活性核苷酸类似物的水溶液中的金属离子协调性能-9- [3-羟基-2-(膦酰基氧基)丙基腺嘌呤(HPMPA) - 定量复合异构均衡的定量

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摘要

Acyclic nucleoside phosphonates are of medical relevance and deserve detailed chemical characterization. We focus here on (S)-9-[3-hydroxy-2-(phosphonomethoxy)propyl]adenine (HPMPA) and include for comparison 9-[2-(phosphonomethoxy)ethyl]adenine (PMEA), as well as the nucleobase-free (phosphonomethoxy)ethane (PME) and (R)-hydroxy-2-(phosphonomethoxy)propane (HPMP). The acidity constants of H-3(HPMPA)(+) were determined and compared with those of the related phosph(on)ate derivatives; they are also needed to understand the properties of the metal ion complexes. Given that in vivo nucleotides and their analogues participate in reactions typically as divalent metal ion (M2+) complexes, the stability constants of the M(H;HPMPA)(+) and M(HPMPA) species with M2+ = Mg2+, Ca2+, Sr2+, Ba2+, Mn2+, Co2+, Ni2+, Cu2+, Zn2+, and Cd2+ were measured. Comparisons between the results for HPMPA(2-) and the previous data for PMEA(2-), HPMP2- and PME2- revealed that for most M(HPMPA) complexes the enhanced stability (the enhancement relative to the stability of a simple phosphonate-M2+ coordination), can solely be explained by the formation of 5-membered chelates involving the ether oxygen. These chelates occur in equilibrium with simple ' open ' phosphonate-M2+ species, the phosphonate group being the primary binding site. The only exceptions are the M(HPMPA) complexes of Ni2+, Cu2+, and Zn2+, which show an additional stability enhancement; in these instances not only the indicated 5-membered chelates are formed, but M2+ coordinates in addition to N3 of the adenine residue forming a 7-membered chelate ring. This observation regarding N3 is important because it emphasizes the metal ion affinity of this site (which is often ignored). Note that in the DNA double helix N3 is exposed to the solvent in the minor groove. The stability data for the monoprotonated M(H;HPMPA)(+) complexes suggest that these carry H+ at the phosphonate group whereas M2+ is partly at the nucleobase and partly also at the phosphonate group. The ratios of these isomers depend on the metal ion involved, e.g., for Cu(H;HPMPA) the ratio of the isomers is about 1:1.
机译:无环核苷膦酸是医学相关的,值得详细的化学特性。在这里,我们专注于(S)-9-〔3-羟基-2-(膦酰氧基)丙基]腺嘌呤(HPMPA),并且包括用于比较9- [2-(膦)乙基]腺嘌呤(PMEA),以及核碱基-free(膦)乙烷(PME)和(R) - 羟基-2-(膦酰基)丙烷(HPMP)。测定的H-3(HPMPA)(+)的酸度常数以及与这些相关的phosph(上)吃衍生物相比;它们还需要了解金属离子复合物的性质。鉴于其在体内的核苷酸和它们的类似物参与反应通常为价金属离子量(M2 +)配合物,所述M(H; HPMPA)的稳定常数(+)和M(HPMPA)物种与M2 + = Mg2 +的,钙离子,锶离子,的Ba 2+,MN2 +,CO 2 +,Ni2 +的,Cu2 +和Zn2 +的,和Cd2 +的测定。结果为HPMPA(2-)和先前数据PMEA(2-)之间的比较,和HPMP2-揭示PME2-对于大多数M(HPMPA)络合物的稳定性增强(相对于简单的膦酸盐的稳定性增强M2 +协调),可以单独通过涉及醚氧的5元螯合物的形成进行说明。这些螯合物发生在平衡与简单的“开放式”膦酸酯-M2 +的种类,膦酸酯基作为主要结合位点。唯一的例外是NI2 +和Cu2 +和Zn 2+的M(HPMPA)络合物,其示出了附加的稳定性增强;在这些情况下,不仅表示形成五元螯合物,但除了腺嘌呤残基的N3 M2 +坐标形成7元螯合环。关于N3这个观察是很重要的,因为它强调这个网站的金属离子亲和(其经常被忽略)。注意,在DNA双螺旋N3被暴露于在小沟中的溶剂。用于稳定数据单质子M(H; HPMPA)(+)的复合物表明,这些进位H +在膦酸盐基团,而M2 +是部分地在所述核碱基和部分地也是在膦酸盐基团。这些异构体的比例取决于所涉及的金属离子,例如,对Cu(H; HPMPA)的异构体的比率为约1:1。

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