首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >The intracellular iron sensor calcein is catalytically oxidatively degraded by iron(II) in a hydrogen peroxide-dependent reaction
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The intracellular iron sensor calcein is catalytically oxidatively degraded by iron(II) in a hydrogen peroxide-dependent reaction

机译:细胞内铁传感器钙黄绿素在过氧化氢依赖性反应中被铁(II)催化氧化降解

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The fluorescent metal chelating dye calcein is used to obtain an estimate of cellular iron levels and to measure the kinetics of the entry of chelators and chelating drugs into cells. Under reducing conditions in the presence of ascorbic acid, such as that would be present in the cell, the Fe(II)-calcein complex was rapidly formed with a rate constant of 3 X 10(5) M-1 s(-1). A slower iron-dependent catalytic degradation of calcein also occurred that resulted in the formation of a non-fluorescent calcein product. The Fe(II)-catalyzed degradation of calcein was largely, but not completely, prevented by catalase. Electron paramagnetic resonance spin trapping experiments showed that the Fe(II)-calcein complex promoted formation of hydroxyl or a hydroxyl radical-like species. Together these results indicated that Fe(II) catalyzed the degradation of calcein through both hydrogen peroxide, and to a. lesser extent, non-hydrogen peroxide-dependent pathways. The iron-calcein complexes that were responsible for the degradation of calcein were likely high valence oxidizing iron-oxo species such as perferryl or ferryl complexes that were redox cycled by ascorbic acid. Thus, the use of calcein as an intracellular iron-sensing indicator may yield misleading results due to its degradation under certain conditions. (C) 2003 Elsevier Science Inc. All rights reserved. [References: 25]
机译:荧光金属螯合染料钙黄绿素用于估算细胞中铁的含量,并测量螯合剂和螯合药物进入细胞的动力学。在存在抗坏血酸的还原条件下(例如细胞中存在的抗坏血酸),以3 X 10(5)M-1 s(-1)的速率常数快速形成Fe(II)-calcein复合物。还发生了较慢的铁依赖性钙黄绿素催化降解,这导致形成了非荧光钙黄绿素产物。 Fe(II)催化的钙黄绿素的降解在很大程度上但不是完全被过氧化氢酶阻止。电子顺磁共振自旋捕获实验表明,Fe(II)-钙黄绿素络合物促进了羟基或类似羟基自由基的物质的形成。这些结果一起表明,Fe(II)催化过氧化氢和α-过氧化氢分解钙黄绿素。程度较小,非过氧化氢依赖性途径。负责钙黄绿素降解的铁钙黄绿素络合物可能是高价的氧化铁-氧代物种,例如被抗坏血酸氧化还原的perferryl或ferryl络合物。因此,由于钙黄绿素在某些条件下会降解,因此将钙黄绿素用作细胞内铁敏感指示剂可能会产生误导性的结果。 (C)2003 Elsevier Science Inc.保留所有权利。 [参考:25]

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