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内源性还原剂对抹香鲸高铁肌红蛋白的还原作用:高铁肌红蛋白的潜在可还原位点

Reduction of sperm whale ferrylmyoglobin by endogenous reducing agents: potential reducible loci of ferrylmyoglobin.

作者信息

Arduini A, Mancinelli G, Radatti G L, Damonti W, Hochstein P, Cadenas E

机构信息

Istituto di Scienze Biochimiche, Universitá degli Studi G. D'Annunzio, Chieti, Italy.

出版信息

Free Radic Biol Med. 1992 Oct;13(4):449-54. doi: 10.1016/0891-5849(92)90185-j.

Abstract

The reactivity of the endogenous antioxidants ascorbate, ergothioneine, and urate toward the high oxidation state of sperm whale myoglobin, ferrylmyoglobin-formed upon oxidation of metmyoglobin by H2O2--was evaluated by optical spectroscopy and SDS-PAGE analysis. Depending on whether these antioxidants were present in the reaction mixture before or after the addition of H2O2 to a metmyoglobin suspension, two different effects were observed: (a) In the former instances, ascorbate, ergothioneine, and urate reduced efficiently the oxoferryl moiety in ferrylmyoglobin to metmyoglobin and prevented dimer formation, a process which requires intermolecular cross-link involving specific tyrosyl residues. In addition, all the reducing compounds inhibited--albeit with different efficiencies--dityorosine-dependent fluorescence build up produced via dimerization of photogenerated tyrosyl radicals. (b) In the latter instances, the antioxidants reduced the preformed sperm whale ferrylmyoglobin to a modified metmyoglobin, the spectral profile of which was characterized by a blue shift of the typical 633 nm absorbance of native metmyoglobin. In addition, under these experimental conditions, the antioxidants did not affect dimer formation, thus indicating the irreversible character of the process. The dimeric form of sperm whale myoglobin--separated from the monomeric form by gel electrophoresis of a solution in which ergothioneine was added to preformed ferrylmyoglobin--revealed optical spectral properties in the visible region identical to that of the modified myoglobin. This suggests that the dimeric form of the hemoprotein is redox active, inasmuch as the oxoferryl complex can be reduced to its ferric form. These results are discussed in terms of the potential reactivity of these endogenous antioxidants toward the reducible loci of ferrylmyoglobin, the oxoferryl moiety, and the apoprotein radical.

摘要

通过光谱学和SDS-PAGE分析,评估了内源性抗氧化剂抗坏血酸、麦角硫因和尿酸盐对抹香鲸肌红蛋白高氧化态(高铁肌红蛋白被H2O2氧化形成的高铁血红素肌红蛋白)的反应活性。根据这些抗氧化剂是在向高铁肌红蛋白悬浮液中添加H2O2之前还是之后存在于反应混合物中,观察到两种不同的效果:(a) 在前者情况下,抗坏血酸、麦角硫因和尿酸盐有效地将高铁血红素肌红蛋白中的氧合铁部分还原为高铁肌红蛋白,并防止二聚体形成,这一过程需要涉及特定酪氨酸残基的分子间交联。此外,所有还原化合物都抑制了——尽管效率不同——通过光生酪氨酸自由基二聚化产生的二酪氨酸依赖性荧光增强。(b) 在后者情况下,抗氧化剂将预先形成的抹香鲸高铁血红素肌红蛋白还原为一种修饰的高铁肌红蛋白,其光谱特征是天然高铁肌红蛋白典型的633 nm吸光度发生蓝移。此外,在这些实验条件下,抗氧化剂不影响二聚体形成,因此表明该过程具有不可逆性。通过将麦角硫因添加到预先形成的高铁血红素肌红蛋白溶液中进行凝胶电泳,从单体形式中分离出的抹香鲸肌红蛋白二聚体在可见光区域显示出与修饰肌红蛋白相同的光谱特性。这表明血红蛋白的二聚体形式具有氧化还原活性,因为氧合铁复合物可以还原为其三价铁形式。根据这些内源性抗氧化剂对高铁血红素肌红蛋白、氧合铁部分和载脂蛋白自由基的可还原位点的潜在反应活性,对这些结果进行了讨论。

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