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首页> 外文期刊>Biochemistry >PREPARATION AND REACTIONS OF MYOGLOBIN MUTANTS BEARING BOTH PROXIMAL CYSTEINE LIGAND AND HYDROPHOBIC DISTAL CAVITY - PROTEIN MODELS FOR THE ACTIVE SITE OF P-450
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PREPARATION AND REACTIONS OF MYOGLOBIN MUTANTS BEARING BOTH PROXIMAL CYSTEINE LIGAND AND HYDROPHOBIC DISTAL CAVITY - PROTEIN MODELS FOR THE ACTIVE SITE OF P-450

机译:P-450活性部位的近半胱氨酸配体和疏水性腔变的肌球蛋白突变体的制备与反应。

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We have reported that H93C human myoglobin (Mb), in which proximal histidine (His93, F8) was replaced by cysteine, gave nearly identical spectroscopic features of P-450 [Adachi, S., Nagano, S., Ishimori, K., Watanabe, Y., Morishima, I., Egawa, T., Kitagawa, T., & Makino R. (1993) Biochemistry, 32, 241-252]. More importantly, the thiolate ligand enhanced its oxygenation activities when supported by H2O2 due to the exclusive encouragement of heterolytic O-O bond cleavage of peroxides. While we have attributed the enhanced heterolysis to the electron donation from the thiolate ligand, possible participation of the distal histidine (H64, E7) in H93C Mb cannot be eliminated. In addition, the racemic product formation catalyzed by H93C Mb implied that its distal cavity could prevent substrates from accessing to the heme and the reactions may proceed other than by the P-450 type mechanism (ferryl oxygen transfer). In order to clarify whether the distal histidine is involved in the O-O bond cleavage step and to improve accessibility of substrates, the distal histidine of H93C Mb is replaced by smaller and nonpolar residues, glycine (H64G/H93C Mb) and valine (H64V/H93C Mb), by site-directed mutagenesis. Various spectroscopic studies on these double-mutated Mbs revealed the ligation of cysteine to the ferric heme as a thiolate form. In the reaction with cumene hydroperoxide, the anionic nature of the proximal cysteine in H64G/H93C and H64V/H93C Mbs was found to encourage the heterolytic O-O bond cleavage as observed for H93C Mb, The results clearly demonstrate that the distal histidine of H93C Mb is hardly involved in the O-O bond cleavage step and are in good agreement with the role of thiolate ligation for the formation of the reactive intermediate, equivalent to compound I, in the catalytic cycle of P-450 reactions. In the oxygenation of methyl p-tolyl sulfide, the ratios of ferryl oxygen transfer increased in H64G/H93C Mb (58%) and H64V/H93C Mb (78%) as compared to H93C Mb (53%). The increased ratios of ferryl oxygen transfer imply the active site of H64G/H93C and H64V/H93C Mbs being more accessible for substrates; however, the sulfoxidation by the ferric mutant Mbs/H2O2 system was much slower than that by H93C Mb. The poor activities of these mutant Mbs are attributed to the significantly discouraged binding of H2O2.
机译:我们已经报道了H93C人肌红蛋白(Mb),其中近端组氨酸(His93,F8)被半胱氨酸取代,其P-450的光谱特征几乎相同[Adachi,S.,Nagano,S.,Ishimori,K.,渡边Y.,森岛I.,Egawa,T。,北川T.和Makino R.(1993)生物化学,32,241-252]。更重要的是,硫醇盐配体在过氧化氢的支持下,由于过氧化氢的杂合O-O键断裂的唯一作用而增强了其氧化活性。虽然我们将杂散化的增强归因于硫醇盐配体的电子捐赠,但不能消除远端组氨酸(H64,E7)参与H93C Mb的可能。此外,H93C Mb催化的外消旋产物形成表明其远端腔体可以阻止底物进入血红素,并且反应可能会通过P-450型机理(轮渡氧转移)以外的其他方式进行。为了阐明远端组氨酸是否参与OO键裂解步骤并改善底物的可及性,H93C Mb的远端组氨酸被较小的非极性残基甘氨酸(H64G / H93C Mb)和缬氨酸(H64V / H93C)取代Mb),通过定点诱变。对这些双突变的Mb进行的各种光谱研究表明,半胱氨酸以硫醇盐形式与血红素铁连接。在与氢过氧化枯烯反应中,发现H64G / H93C和H64V / H93C Mbs中近端半胱氨酸的阴离子性质促进了H93C Mb的杂化OO键裂解,结果清楚地表明H93C Mb的远端组氨酸是几乎不参与OO键的裂解步骤,并且与硫醇盐的连接作用在P-450反应的催化循环中形成相当于化合物I的反应性中间体的作用非常吻合。在甲基对甲苯基硫醚的氧合中,与H93C Mb(53%)相比,H64G / H93C Mb(58%)和H64V / H93C Mb(78%)中的ferryl氧转移比率增加。 Ferryl氧转移比率的增加意味着底物更容易接近H64G / H93C和H64V / H93C Mb的活性位;但是,铁突变体Mbs / H2O2系统的亚硫酸盐氧化作用比H93C Mb慢。这些突变的Mbs的活性差归因于H2O2的显着抑制的结合。

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