【2h】

Investigating the active centre of the Scytalidium thermophilum catalase

机译:研究Scytalidium thermophilum过氧化氢酶的活性中心

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摘要

Almost all monofunctional haem catalases contain a highly conserved core containing the active site, which is connected to the exterior of the enzyme by three channels. These channels have been identified as potential routes for substrate flow and product release. To further investigate the role of these molecular channels, a series of mutants of Scytalidium thermophilum catalase were generated. The three-dimensional structures of four catalase variants, N155A, V123A, V123C and V123T, have been determined at resolutions of 2.25, 1.93, 1.9 and 1.7 Å, respectively. The V123C variant contains a new covalent bond between the S atom of Cys123 and the imidazole ring of the essential His82. This variant enzyme has only residual catalase activity and contains haem b instead of the normal haem d. The H82A variant demonstrates low catalase and phenol oxidase activities (0.2 and 20% of those of recombinant wild-type catalase–phenol oxidase, respectively). The N155A and N155H variants exhibit 4.5 and 3% of the wild-type catalase activity and contain haem d, showing that Asn155 is essential for catalysis but is not required for the conversion of haem b to haem d. Structural analysis suggests that the cause of the effect of these mutations on catalysis is the disruption of the ability of dioxygen substrates to efficiently access the active site. Additional mutants have been characterized biochemically to further probe the roles of the different channels. Introducing smaller or polar side chains in place of Val123 reduces the catalase activity. The F160V, F161V and F168V mutants show a marked decrease in catalase activity but have a much lower effect on the phenol oxidase activity, despite containing substoichiometric amounts of haem.
机译:几乎所有的单功能血红素过氧化氢酶都含有一个高度保守的核心,该核心含有活性位点,该位点通过三个通道与酶的外部连接。这些通道已被确定为底物流动和产品释放的潜在途径。为了进一步研究这些分子通道的作用,产生了一系列Scytalidium thermophilum过氧化氢酶突变体。已分别以2.25、1.93、1.9和1.7?A的分辨率确定了四个过氧化氢酶变体N155A,V123A,V123C和V123T的三维结构。 V123C变体在Cys123的S原子和基本His82的咪唑环之间包含一个新的共价键。该变体酶仅具有残留的过氧化氢酶活性,并且包含血红素b而不是正常血红素d。 H82A变体表现出较低的过氧化氢酶和苯酚氧化酶活性(分别是重组野生型过氧化氢酶-苯酚氧化酶的0.2和20%)。 N155A和N155H变体表现出4.5%和3%的野生型过氧化氢酶活性,并含有haem d,表明Asn155对于催化必不可少,但对于将haem b转化为haem d并不是必需的。结构分析表明,这些突变对催化作用的原因是双氧底物有效进入活性位点能力的破坏。已经对其他突变体进行了生化表征,以进一步探究不同通道的作用。取代Val123引入较小或极性侧链会降低过氧化氢酶活性。 F160V,F161V和F168V突变体显示过氧化氢酶活性显着下降,但对苯酚氧化酶活性的影响要低得多,尽管其中含有亚化学计量的血红素。

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