首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Complexation and divalent of desferricoprogen with trivalent Fe, Al, Ga, InFe, Ni, Cu, Zn metal ions: effects of the linking chain structure on the metal binding ability of hydroxamate based siderophores
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Complexation and divalent of desferricoprogen with trivalent Fe, Al, Ga, InFe, Ni, Cu, Zn metal ions: effects of the linking chain structure on the metal binding ability of hydroxamate based siderophores

机译:去铁原与三价Fe,Al,Ga,InFe,Ni,Cu,Zn金属离子的络合和二价:连接链结构对基于异羟肟酸酯的铁载体金属结合能力的影响

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Complexes of the natural siderophore, desferricoprogen (DFC), with several trivalent and divalent metal ions in aqueous solution were studied by pH-potentiometry, UV-Vis spectrophotometry and cyclic voltammetry. DFC was found to be an effective metal binding ligand, which, in addition to Fe(III), forms complexes of high stability with Ga(III), AI(III), In(III), Cu(II), Ni(II) and Zn(II). Fe(II), however, is oxidized by DFC under anaerobic conditions and Fe(III) complexes are formed. By comparing the results with those of desferrioxamine B (DFB), it can be concluded that the conjugated P-double bond slightly increases the stability of the hydroxamate chelates, consequently increases the stability of mono-chelated complexes of DFC. Any steric effect by the connecting chains arises only in the bis- and tris-chelated complexes. With metal ions possessing a relatively big ionic radius (Cu(II), Ni(II), Zn(II), In(III)) DFC, containing a bit longer chains than DFB, forms slightly more stable complexes. With smaller metal ions the trend is the opposite. Also a notable difference is that stable trinuclear complex, [Cu3L2], is formed with DFC but not with DFB. Possible bio-relevance of the Fe(II)/Fe(III) results is also discussed in the paper. (C) 2004 Elsevier Inc. All rights reserved.
机译:通过pH电位法,UV-Vis分光光度法和循环伏安法研究了天然铁载体去铁蛋白原(DFC)与几种三价和二价金属离子的络合物。发现DFC是一种有效的金属结合配体,除Fe(III)外,还与Ga(III),Al(III),In(III),Cu(II),Ni(II)形成了高稳定性的络合物。 )和Zn(II)。然而,Fe(II)在厌氧条件下被DFC氧化,形成Fe(III)络合物。通过将结果与去铁胺X(DFB)的结果进行比较,可以得出结论,共轭P-双键会稍微增加异羟肟酸酯螯合物的稳定性,因此会增加DFC单螯合物的稳定性。连接链的任何空间效应仅在双-和三-螯合的复合物中产生。对于具有相对较大离子半径的金属离子(Cu(II),Ni(II),Zn(II),In(III)),DFC的链长于DFB,形成的络合物稍微稳定一些。对于较小的金属离子,趋势相反。同样值得注意的区别是,稳定的三核配合物[Cu3L2]与DFC形成,但与DFB形成。本文还讨论了Fe(II)/ Fe(III)结果可能的生物相关性。 (C)2004 Elsevier Inc.保留所有权利。

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