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一种糖类平台高铁色素类似物的铁螯合平衡、氧化还原及铁载体活性

Iron chelation equilibria, redox, and siderophore activity of a saccharide platform ferrichrome analogue.

作者信息

Dhungana Suraj, Harrington James M, Gebhardt Peter, Möllmann Ute, Crumbliss Alvin L

机构信息

Department of Chemistry, Duke University, Box 90346 Durham, North Carolina 27708-0346, USA.

出版信息

Inorg Chem. 2007 Oct 1;46(20):8362-71. doi: 10.1021/ic070158l. Epub 2007 Sep 7.

Abstract

A complete characterization of the aqueous solution Fe(III) and Fe(II) coordination chemistry of a saccharide-based ferrichrome analogue, 1-O-methyl-2,3,6-tris-O-[4-(N-hydroxy-N-ethylcarbamoyl)-n-butyryl]-alpha-D-glucopyranoside (H3LN236), is reported including relevant thermodynamic parameters and growth promotion activity with respect to both Gram-negative and Gram-positive bacterial strains. The saccharide platform is an attractive backbone for the design and synthesis of ferrichrome analogues because of its improved water solubility and hydrogen-bonding capabilities, which can potentially provide favorable receptor recognition and biological activity. The ligand deprotonation constants (pKa values), iron complex (FeIII(LN236) and FeII(LN236)1-) protonation constants (KFeHxL-236-N), overall Fe(III) and Fe(II) chelation constants (beta110), and aqueous solution speciation were determined by spectrophotometric and potentiometric titrations, EDTA competition equilibria, and cyclic voltammetry. Log betaIII110 = 31.16 and pFe = 26.1 for FeIII(LN236) suggests a high affinity for Fe(III), which is comparable to or greater than ferrichrome and other ferrichrome analogues. The E1/2 for the FeIII(LN236)/FeII(LN236)1- couple was determined to be -454 mV (vs NHE) from quasi-reversible cyclic voltammograms at pH 9. Below pH 6.5, the E1/2 shifts to more positive values and the pH-dependent E1/2 profile was used to determine the FeII(LN236)1- protonation constants and overall stability constant log betaII110 = 11.1. A comparative analysis of similar data for an Fe(III) complex of a structural isomer of this exocyclic saccharide chelator (H3LR234), including strain energy calculations, allows us to analyze the relative effects of the pendant arm position and hydroxamate moiety orientation (normal vs retro) on overall complex stability. A correlation between siderophore activity and iron coordination chemistry of these saccharide-hydroxamate chelators is made.

摘要

报道了一种基于糖类的高铁色素类似物1-O-甲基-2,3,6-三-O-[4-(N-羟基-N-乙基氨基甲酰基)-正丁酰基]-α-D-吡喃葡萄糖苷(H3LN236)的水溶液中铁(III)和铁(II)配位化学的完整表征,包括相关的热力学参数以及对革兰氏阴性和革兰氏阳性细菌菌株的生长促进活性。糖类平台因其改善的水溶性和氢键能力,是设计和合成高铁色素类似物的有吸引力的骨架,这可能提供有利的受体识别和生物活性。通过分光光度法和电位滴定法、EDTA竞争平衡法以及循环伏安法测定了配体去质子化常数(pKa值)、铁配合物(FeIII(LN236)和FeII(LN236)1-)质子化常数(KFeHxL-236-N)、总的铁(III)和铁(II)螯合常数(β110)以及水溶液中的物种分布。FeIII(LN236)的log βIII110 = 31.16和pFe = 26.1表明其对铁(III)具有高亲和力,这与高铁色素和其他高铁色素类似物相当或更高。在pH 9时,通过准可逆循环伏安图测定FeIII(LN236)/FeII(LN236)1-电对的E1/2为-454 mV(相对于标准氢电极)。在pH 6.5以下,E1/2向更正的值移动,并且利用pH依赖性E1/2曲线来确定FeII(LN236)1-质子化常数和总的稳定性常数log βII110 = 11.1。对这种环外糖类螯合剂(H3LR234)的结构异构体的铁(III)配合物的类似数据进行比较分析,包括应变能计算,使我们能够分析侧链位置和异羟肟酸酯部分取向(正常与反向)对整体配合物稳定性的相对影响。建立了这些糖类-异羟肟酸螯合剂的铁载体活性与铁配位化学之间的相关性。

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