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Probing the conformational mobility of the active site of a heme peroxidase

机译:探测血红素过氧化物酶活性位点的构象迁移

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摘要

We have previously demonstrated (Badyal et al., J. Biol. Chem., 2006, 281, 24512) that removal of the active site tryptophan (Trp41) in ascorbate peroxidase increases the conformational mobility of the distal histidine residue (His42) and that His42 coordinates to the iron in the oxidised W41A enzyme to give a 6-coordinate, low-spin peroxidase. In this work, we probe the conformational flexibility of the active site in more detail. We examine whether other residues (Cys, Tyr, Met) can also ligate to the heme at position 42; we find that introduction of other ligating amino acids created a cavity in the heme pocket, but that formation of 6-coordinate heme is not observed. In addition, we examine the role of Asn-71, which hydrogen bonds to His42 and tethers the distal histidine in the active site pocket; we find that removal of this hydrogen bond increases the proportion of low-spin heme. We suggest that, in addition to its well-known role in facilitating the reaction with peroxide, His42 also plays a role in defining the shape and folding of the active site pocket.
机译:我们先前已经证明(Badyal等人,生物化学杂志,2006,281,24512),去除抗坏血酸过氧化物酶中的活性位点色氨酸(Trp41)会增加远端组氨酸残基(His42)的构象迁移率, His42与氧化的W41A酶中的铁配位,得到6配位的低旋转过氧化物酶。在这项工作中,我们将更详细地探讨活性位点的构象灵活性。我们检查其他残基(Cys,Tyr,Met)是否也可以连接到第42​​位的血红素上。我们发现引入其他连接氨基酸会在血红素袋中形成一个腔,但未观察到六配位血红素的形成。此外,我们研究了Asn-71的作用,该氢键结合到His42上并束缚活动位点袋中的远端组氨酸。我们发现去除该氢键会增加低旋血红素的比例。我们建议,除了其在促进与过氧化物反应中的众所周知的作用外,His42在确定活性位点袋的形状和折叠方面也起着作用。

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