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金属与人类血清转铁蛋白结合强度的合理化研究

Rationalization of the strength of metal binding to human serum transferrin.

作者信息

Li H, Sadler P J, Sun H

机构信息

Department of Chemistry, Birkbeck College, University of London, England.

出版信息

Eur J Biochem. 1996 Dec 1;242(2):387-93. doi: 10.1111/j.1432-1033.1996.0387r.x.

Abstract

A wide range of metal ions of natural, therapeutic, diagnostic and toxic interest are transported by serum transferrin (80 kDa). It is therefore important to understand the factors that control the strength of metal binding. We show here that even though Sc3+ has only slightly larger ionic radius than Fe3+ (0.075 nm versus 0.065 nm), it binds to the C-lobe and N-lobe sites much more weakly: logK1* (bicarbonate-independent binding constant) 14.6 +/- 0.2, logK2* 13.3 +/- 0.3, respectively (10 mM Hepes, 5 mM bicarbonate, 310 K). Preferential binding to the C-lobe was established by 1H-NMR spectroscopy. We show that the strength of binding of divalent and trivalent metal ions to human serum transferrin correlates with metal ion acidity [and therefore with the strength of binding to hydroxide, K1(OH)]. The correlations are of predictive value for a range of other metal ions. The plot of logK1* (human serum transferrin) versus logK1(OH) has a negative intercept consistent with unfavorable entropy effects due to lobe closure of apotransferrin on binding of metal ions. This interpretation was tested by comparison with similar correlations of the strength of metal binding to the enzymes carbonic anhydrase and carboxypeptidase with that for the low-M(r) ligand imidazole. These plots have positive intercepts consistent with the preorganized (entatic) state of these metalloenzymes (favorable entropy effects on metal binding).

摘要

血清转铁蛋白(80 kDa)可转运多种具有天然、治疗、诊断和毒性意义的金属离子。因此,了解控制金属结合强度的因素很重要。我们在此表明,尽管Sc3+的离子半径仅比Fe3+略大(分别为0.075 nm和0.065 nm),但其与C叶和N叶位点的结合要弱得多:logK1*(不依赖碳酸氢盐的结合常数)分别为14.6±0.2、logK2为13.3±0.3(10 mM Hepes、5 mM碳酸氢盐、310 K)。通过1H-NMR光谱确定了对C叶的优先结合。我们表明,二价和三价金属离子与人血清转铁蛋白的结合强度与金属离子酸度相关[因此与与氢氧化物的结合强度K1(OH)相关]。这些相关性对一系列其他金属离子具有预测价值。logK1(人血清转铁蛋白)对logK1(OH)的图有一个负截距,这与脱铁转铁蛋白在结合金属离子时叶闭合导致的不利熵效应一致。通过与金属与碳酸酐酶和羧肽酶的结合强度与低分子量配体咪唑的结合强度的类似相关性进行比较,对这一解释进行了检验。这些图有正截距,与这些金属酶的预组织(静态)状态一致(对金属结合有有利的熵效应)。

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