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首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >Determination of the pKa value of the hydroxyl group in the alpha-hydroxycarboxylates citrate, malate and lactate by 13C NMR: implications for metal coordination in biological systems
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Determination of the pKa value of the hydroxyl group in the alpha-hydroxycarboxylates citrate, malate and lactate by 13C NMR: implications for metal coordination in biological systems

机译:通过13 C NMR测定柠檬酸,苹果酸和乳酸α-羟基羧酸盐中羟基的pKa值:对生物系统中金属配位的影响

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Citric acid is an important metal chelator of biological relevance. Citric acid helps solubilizing metals, increasing their bioavailability for plants and microbes and it is also thought to be a constituent of both the extracellular and cytoplasmic low molecular iron pools occurring in plants and vertebrates. Metal coordination by citric acid involves coordination both by the carboxylate and hydroxyl groups, of particular interest is its alpha-hydroxycarboxylate function. This structural feature is highly conserved in siderophores produced by evolutionarily distant species and seems to confer specificity toward Fe(III) binding. In order to understand the mechanism of metal coordination by alpha-hydroxycarboxylates and correctly evaluate the respective complex stability constants, it is essential to improve the knowledge about the ionisation of the alcohol group in these compounds. We have evaluated the hydroxyl pKa value of citric, malic and lactic acids with the objective of understanding the influence of alpha-carbon substitution. Studies at high pH values, utilizing C-13 NMR, permitted estimation of the pKa values for the three acids. The pKa (alcohol) values (14.4 for citric acid, 14.5 for malic acid, and 15.1 for lactic acid) are considerably higher than the previously reported value for citric acid (11.6) but still lower than the value of 15.5 for methanol. A comparative analysis of the three compounds indicates that different substitutions on the alpha-carbon introduce changes to the inductive effect experienced by the hydroxyl group thereby modulating its ionisation behaviour. Comparison with the siderophore rhizoferrin, which pKa (alcohol) values were confirmed to be 10 and 11.3, suggests that intra-molecular hydrogen bonding may also aid in the hydroxyl ionisation by stabilizing the resulting anion. Studies of metal coordination by alpha-hydroxycarboxylates should take these factors into account.
机译:柠檬酸是具有生物相关性的重要金属螯合剂。柠檬酸有助于溶解金属,增加其对植物和微生物的生物利用度,并且它也被认为是植物和脊椎动物中存在的细胞外和细胞质低分子铁库的组成部分。柠檬酸的金属配位涉及羧酸盐和羟基的配位,特别令人关注的是其α-羟基羧酸盐的功能。这种结构特征在进化距离遥远的物种产生的铁载体中高度保守,并且似乎赋予了对Fe(III)结合的特异性。为了理解由α-羟基羧酸盐进行金属配位的机制并正确评估各自的复杂稳定性常数,必须提高有关这些化合物中醇基电离的知识。我们已经评估了柠檬酸,苹果酸和乳酸的羟基pKa值,目的是了解α-碳取代的影响。利用C-13 NMR在高pH值下进行的研究允许估算这三种酸的pKa值。 pKa(酒精)值(柠檬酸为14.4,苹果酸为14.5,乳酸为15.1)大大高于先前报道的柠檬酸(11.6)值,但仍低于甲醇的15.5。对这三种化合物的比较分析表明,α-碳上的不同取代基会改变羟基所经历的诱导作用,从而调节其电离行为。与确证pKa(醇)值为10和11.3的铁载体根铁蛋白的比较表明,分子内氢键还可以通过稳定所得阴离子来帮助羟基离子化。 α-羟基羧酸盐对金属配位的研究应考虑这些因素。

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