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Dissection of the radical reactions linked to fetal hemoglobin reveals enhanced pseudoperoxidase activity

机译:解剖与胎儿血红蛋白有关的自由基反应显示增强的假过氧化物酶活性

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摘要

In the presence of excess hydrogen peroxide (H2O2), ferrous (Fe+2) human hemoglobin (Hb) (α2β2) undergoes a rapid conversion to a higher oxidation ferryl state (Fe+4) which rapidly autoreduces back to the ferric form (Fe+3) as H2O2 is consumed in the reaction. In the presence of additional H2O2 the ferric state can form both ferryl Hb and an associated protein radical in a pseudoperoxidative cycle that results in the loss of radicals and heme degradation. We examined whether adult HbA (β2α2) exhibits a different pseudoenzymatic activity than fetal Hb (γ2α2) due to the switch of γ to β subunits. Rapid mixing of the ferric forms of both proteins with excess H2O2 resulted in biphasic kinetic time courses that can be assigned to γ/β and α, respectively. Although there was a 1.5 fold increase in the fast reacting γ /β subunits the slower reacting phases (attributed to α subunits of both proteins) were essentially the same. However, the rate constant for the auto-reduction of ferryl back to ferric for both proteins was found to be 76% higher for HbF than HbA and in the presence of the mild reducing agent, ascorbate there was a 3-fold higher reduction rate in ferryl HbF as opposed to ferryl HbA. Using quantitative mass spectrometry in the presence of H2O2 we found oxidized γ/β Cys93, to be more abundantly present in HbA than HbF, whereas higher levels of nitrated β Tyr35 containing peptides were found in HbA samples treated with nitrite. The extraordinary stability of HbF reported here may explain the evolutionary advantage this protein may confer onto co-inherited hemoglobinopathies and can also be utilized in the engineering of oxidatively stable Hb-based oxygen carriers.
机译:在过量的过氧化氢(H2O2)存在下,亚铁(Fe +2 )人血红蛋白(Hb)(α2β2)迅速转变为更高的氧化铁态(Fe +4 < / sup>)迅速还原为三价铁形式(Fe +3 ),因为反应中消耗了H2O2。在存在额外的H2O2的情况下,三价铁态可以在假过氧化循环中同时形成六价铬和相关的蛋白质自由基,从而导致自由基的丢失和血红素的降解。我们检查了成人HbA(β2α2)是否表现出与胎儿Hb(γ2α2)不同的假酶活性,这是由于γ向β亚基的转换所致。两种蛋白质的铁形式与过量的H2O2的快速混合导致双相动力学时间过程,可以分别指定为γ/β和α。尽管快速反应的γ/β亚基增加了1.5倍,但较慢的反应相(归因于两种蛋白质的α亚基)基本相同。但是,发现两种蛋白质的铁氧还原自动还原为三价铁的速率常数比HbA高出76%,并且在存在轻度还原剂的情况下,抗坏血酸的还原速率比HbA高3倍。 Ferryl HbF相对于Ferryl HbA。在H2O2存在下使用定量质谱分析,我们发现氧化的γ/βCys93比HbF在HbA中的含量更高,而在亚硝酸盐处理的HbA样品中发现了更高水平的硝化的含βTyr35的肽。此处报道的HbF的非凡稳定性可能解释了该蛋白可能赋予共同遗传的血红蛋白病的进化优势,也可用于氧化稳定的基于Hb的氧载体的工程化。

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