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MauG,一种色氨酸-色氨酸醌生物合成所需的新型双血红素蛋白。

MauG, a novel diheme protein required for tryptophan tryptophylquinone biogenesis.

作者信息

Wang Yongting, Graichen M Elizabeth, Liu Aimin, Pearson Arwen R, Wilmot Carrie M, Davidson Victor L

机构信息

Department of Biochemistry, University of Mississippi Medical Center, Jackson, Mississippi 39216, USA.

出版信息

Biochemistry. 2003 Jun 24;42(24):7318-25. doi: 10.1021/bi034243q.

Abstract

The biosynthesis of methylamine dehydrogenase (MADH) from Paracoccus denitrificans requires four genes in addition to those that encode the two structural protein subunits. None of these gene products have been previously isolated. One of these, mauG, exhibits sequence similarity to diheme cytochrome c peroxidases and is required for the synthesis of the tryptophan tryptophylquinone (TTQ) prosthetic group of MADH. A system was developed for the homologous expression of MauG in P. denitrificans. Its signal sequence was correctly processed, and it was purified from the periplasmic cell fraction. The protein contains two covalent c-type hemes, as predicted from the deduced sequence. EPR spectroscopy reveals that the protein as isolated possesses about equal amounts of one high-spin heme with axial symmetry and one low-spin heme with rhombic symmetry. The low-spin heme contains a major and minor component suggesting a small degree of heme heterogeneity. The high-spin heme and the major low-spin heme component each exhibit resonances that are atypical of c-type hemes and dissimilar to those reported for diheme cytochrome c peroxidases. MauG exhibited only very weak peroxidase activity when assayed with either c-type cytochromes or o-dianisidine as an electron donor. Fully reduced MauG was shown to bind carbon monoxide and could be reoxidized by oxygen. The relevance of these unusual properties of MauG is discussed in the context of its role in TTQ biogenesis.

摘要

除了编码两个结构蛋白亚基的基因外,反硝化副球菌中甲基胺脱氢酶(MADH)的生物合成还需要四个基因。这些基因产物以前都未被分离出来。其中一个基因mauG,与双血红素细胞色素c过氧化物酶具有序列相似性,是MADH的色氨酸-色氨酸醌(TTQ)辅基合成所必需的。开发了一个在反硝化副球菌中同源表达MauG的系统。其信号序列被正确加工,并从周质细胞部分中纯化出来。该蛋白质含有两个共价结合的c型血红素,与推导序列预测的一致。电子顺磁共振光谱显示,分离得到的蛋白质含有等量的具有轴向对称性的高自旋血红素和具有菱形对称性的低自旋血红素。低自旋血红素包含一个主要成分和一个次要成分,表明血红素存在一定程度的异质性。高自旋血红素和主要的低自旋血红素成分各自表现出的共振是c型血红素所不典型的,且与双血红素细胞色素c过氧化物酶报道的不同。当以c型细胞色素或邻联茴香胺作为电子供体进行测定时,MauG仅表现出非常微弱的过氧化物酶活性。完全还原的MauG被证明能结合一氧化碳,并可被氧气再氧化。在其在TTQ生物合成中的作用背景下,讨论了MauG这些异常性质的相关性。

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