首页> 美国卫生研究院文献>other >A T67A mutation in the proximal pocket of the high-spin heme of MauG stabilizes formation of a mixed-valent FeII/FeIII state and enhances charge resonance stabilization of the bis-FeIV state
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A T67A mutation in the proximal pocket of the high-spin heme of MauG stabilizes formation of a mixed-valent FeII/FeIII state and enhances charge resonance stabilization of the bis-FeIV state

机译:MauG高自旋血红素近端口袋中的T67A突变可稳定FeII / FeIII混合态的形成并增强bis-FeIV状态的电荷共振稳定性

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摘要

The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modification of a precursor of methylamine dehydrogenase (preMADH) to complete the biosynthesis of its protein-derived tryptophan tryptophylquinone (TTQ) cofactor. One heme is low-spin with ligands provided by His205 and Tyr294, and the other is high-spin with a ligand provided by His35. The side chain methyl groups of Thr67 and Leu70 are positioned at a distance of 3.4 Å on either side of His35, maintaining a hydrophobic environment in the proximal pocket of the high-spin heme and restricting the movement of this ligand. Mutation of Thr67 to Ala in the proximal pocket of the high-spin heme prevented reduction of the low-spin heme by dithionite, yielding a mixed-valent state. The mutation also enhanced the stabilization of the charge-resonance-transition of the high-valent bis-FeIV state that is generated by addition of H2O2. The rates of electron transfer from TTQ biosynthetic intermediates to the high-valent form of T67A MauG were similar to that of wild-type MauG. These results are compared to those previously reported for mutation of residues in the distal pocket of the high-spin heme that also affected the redox properties and charge resonance transition stabilization of the high-valent state of the hemes. However, given the position of residue 67, the structure of the variant protein and the physical nature of the T67A mutation, the basis for the effects of the T67A mutation must be different from those of the mutations of the residues in the distal heme pocket.
机译:双血红素酶MauG催化甲胺脱氢酶(preMADH)的前体翻译后修饰所需的六电子氧化,以完成其蛋白质衍生色氨酸色氨酸醌(TTQ)辅因子的生物合成。一个血红素是带有His205和Tyr294提供的配体的低自旋,另一个血红素是带有His35提供的配体的高自旋。 Thr67和Leu70的侧链甲基在His35的任一侧都位于3.4Å的距离处,从而在高自旋血红素的近端袋中保持疏水环境,并限制了该配体的移动。 Thr67突变为高自旋血红素近端囊袋中的Ala可防止连二亚硫酸盐还原低自旋血红素,产生混合价状态。该突变还增强了通过添加H2O2产生的高价bis-Fe IV 态的电荷共振跃迁的稳定性。从TTQ生物合成中间体到高价形式的T67A MauG的电子转移速率与野生型MauG相似。将这些结果与先前报道的高自旋血红素远端囊中残基突变的结果进行了比较,这些突变也影响了血红素高价态的氧化还原特性和电荷共振跃迁稳定性。但是,给定残基67的位置,变体蛋白的结构和T67A突变的物理性质,T67A突变影响的基础必须不同于血红素远端囊袋中残基的突变。

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