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Stability Constants of Mixed Ligand Complexes of Nickel(II) with Adenine and Some Amino Acids

机译:镍(II)与腺嘌呤和某些氨基酸的混合配体配合物的稳定性常数

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摘要

Nickel is one of the essential trace elements found in biological systems. It is mostly found in nickel-based enzymes as an essential cofactor. It forms coordination complexes with amino acids within enzymes. Nickel is also present in nucleic acids, though its function in DNA or RNA is still not clearly understood. In this study, complex formation tendencies of Ni(II) with adenine and certain L-amino acids such as aspartic acid, glutamic acid, asparagine, leucine, phenylalanine, and tryptophan were investigated in an aqueous medium. Potentiometric equilibrium measurements showed that both binary and ternary complexes of Ni(II) form with adenine and the above-mentioned L-amino acids. Ternary complexes of Ni(II)-adenine-L-amino acids are formed by stepwise mechanisms. Relative stabilities of the ternary complexes are compared with those of the corresponding binary complexes in terms of Δlog10⁡K, log10⁡X, and % RS values. It was shown that the most stable ternary complex is Ni(II):Ade:L-Asn while the weakest one is Ni(II):Ade:L-Phe in aqueous solution used in this research. In addition, results of this research clearly show that various binary and ternary type Ni(II) complexes are formed in different concentrations as a function of pH in aqueous solution.
机译:镍是生物系统中必需的微量元素之一。它主要存在于镍基酶中,是必需的辅因子。它与酶内的氨基酸形成配位复合物。镍也存在于核酸中,尽管仍不清楚其在DNA或RNA中的功能。在这项研究中,在含水介质中研究了Ni(II)与腺嘌呤和某些L-氨基酸(如天冬氨酸,谷氨酸,天冬酰胺,亮氨酸,苯丙氨酸和色氨酸)的复杂形成趋势。电位平衡测量表明,Ni(II)的二元和三元络合物均与腺嘌呤和上述L-氨基酸形成。 Ni(II)-腺嘌呤-L-氨基酸的三元络合物通过逐步机理形成。将三元络合物的相对稳定性与相应的二元络合物的相对稳定性按照Δlog10⁡K,log10⁡X和%RS值进行比较。结果表明,在本研究中使用的水溶液中,最稳定的三元络合物是Ni(II):Ade:L-Asn,而最弱的三元络合物是Ni(II):Ade:L-Phe。此外,这项研究的结果清楚地表明,各种二元和三元型Ni(II)配合物以不同的浓度随水溶液中pH的变化而形成。

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