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Electron Transfer Function versus Oxygen Delivery: A Comparative Study for Several Hexacoordinated Globins Across the Animal Kingdom

机译:电子传递函数与氧气输送:横跨动物界的几种六配位球蛋白的比较研究

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摘要

Caenorhabditis elegans globin GLB-26 (expressed from gene T22C1.2) has been studied in comparison with human neuroglobin (Ngb) and cytoglobin (Cygb) for its electron transfer properties. GLB-26 exhibits no reversible binding for O2 and a relatively low CO affinity compared to myoglobin-like globins. These differences arise from its mechanism of gaseous ligand binding since the heme iron of GLB-26 is strongly hexacoordinated in the absence of external ligands; the replacement of this internal ligand, probably the E7 distal histidine, is required before binding of CO or O2 as for Ngb and Cygb. Interestingly the ferrous bis-histidyl GLB-26 and Ngb, another strongly hexacoordinated globin, can transfer an electron to cytochrome c (Cyt-c) at a high bimolecular rate, comparable to those of inter-protein electron transfer in mitochondria. In addition, GLB-26 displays an unexpectedly rapid oxidation of the ferrous His-Fe-His complex without O2 actually binding to the iron atom, since the heme is oxidized by O2 faster than the time for distal histidine dissociation. These efficient mechanisms for electron transfer could indicate a family of hexacoordinated globin which are functionally different from that of pentacoordinated globins.
机译:已将秀丽隐杆线虫球蛋白GLB-26(从基因T22C1.2表达)与人神经球蛋白(Ngb)和细胞球蛋白(Cygb)进行了电子转移研究。与类似肌红蛋白的球蛋白相比,GLB-26对O2没有可逆的结合并且具有相对较低的CO亲和力。这些差异源于其气态配体结合的机理,因为在没有外部配体的情况下,GLB-26的血红素铁具有很强的六配位性。与Ngb和Cygb一样,在结合CO或O2之前,需要替换此内部配体(可能是E7远端组氨酸)。有趣的是,亚铁双组氨酸基GLB-26和Ngb(另一种高度六配位的球蛋白)可以以高双分子速率将电子转移至细胞色素c(Cyt-c),与线粒体中蛋白质间电子转移的速率相当。另外,GLB-26表现出出乎意料的His-Fe-His亚铁复合物的快速氧化,而O2实际上不与铁原子结合,这是因为血红素被O2氧化的速度比远端组氨酸离解的时间快。这些有效的电子转移机制可能表明六配位珠蛋白家族与五配位珠蛋白在功能上有所不同。

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