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首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Peroxidase activity enhancement of myoglobin by two cooperative distal histidines and a channel to the heme pocket
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Peroxidase activity enhancement of myoglobin by two cooperative distal histidines and a channel to the heme pocket

机译:两个协同的远端组氨酸和血红素口袋的通道增强了肌红蛋白的过氧化物酶活性

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To reveal the structure-function relationship of heme proteins, and to provide clues for creating artificial heme proteins with improved functions, we here use myoglobin (Mb) as a model protein, and report that its peroxidase activity can be enhanced by construction of two distal histidines and a channel to the heme pocket. It showed that in addition to a single distal histidine with a suitable distance to the heme iron (Phe43 to His43 mutation), a second distal histidine (Leu29 to His29 mutation) can work cooperatively to increase the turnover number, mimicking the role of well-known His-Arg pair in native peroxidases. Moreover, a channel created to the heme pocket by removal of the native His64 gate (His64 to A1a64 mutation) was shown to facilitate the binding of substrate, resulting in enhanced catalytic efficiency for the triple mutant L29H/F43H/H64A Mb, which is beyond the addition of both double mutants, L29H/H64A Mb and F43 H/H64A Mb. These results provide valuable information for elucidating the structure-function relationship of heme proteins. In addition, this study provides clues for design of artificial heme proteins, and the strategy of creating a channel to the heme active center is expected be extended to design of other artificial enzymes with improved catalytic performance. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了揭示血红素蛋白的结构-功能关系,并为创建功能更完善的人造血红素蛋白提供线索,我们在这里使用肌红蛋白(Mb)作为模型蛋白,并报道其过氧化物酶活性可通过构建两个末端蛋白来增强。组氨酸和血红素口袋的通道。结果表明,除了与血红素铁有适当距离的单个远端组氨酸(Phe43至His43突变)外,第二个远端组氨酸(Leu29至His29突变)也可以协同工作以增加周转次数,模仿了天然过氧化物酶中已知的His-Arg对。此外,通过去除天然His64门(His64到A1a64突变)而形成的血红素口袋通道显示出有助于底物结合,从而提高了三重突变L29H / F43H / H64A Mb的催化效率,这超出了加入两个双重突变体L29H / H64A Mb和F43 H / H64A Mb。这些结果为阐明血红素蛋白的结构-功能关系提供了有价值的信息。此外,这项研究为设计人工血红素蛋白提供了线索,建立血红素活性中心通道的策略有望扩展到其他具有改善催化性能的人工酶的设计中。 (C)2016 Elsevier B.V.保留所有权利。

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