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A Heme-based Redox Sensor in the Methanogenic Archaeon Methanosarcina acetivorans

机译:产甲烷古生甲烷菌嗜甲烷菌中基于血红素的氧化还原传感器

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摘要

Based on a bioinformatics study, the protein MA4561 from the methanogenic archaeon Methanosarcina acetivorans was originally predicted to be a multidomain phytochrome-like photosensory kinase possibly binding open-chain tetrapyrroles. Although we were able to show that recombinantly produced and purified protein does not bind any known phytochrome chromophores, UV-visible spectroscopy revealed the presence of a heme tetrapyrrole cofactor. In contrast to many other known cytoplasmic heme-containing proteins, the heme was covalently attached via one vinyl side chain to cysteine 656 in the second GAF domain. This GAF domain by itself is sufficient for covalent attachment. Resonance Raman and magnetic circular dichroism data support a model of a six-coordinate heme species with additional features of a five-coordination structure. The heme cofactor is redox-active and able to coordinate various ligands like imidazole, dimethyl sulfide, and carbon monoxide depending on the redox state. Interestingly, the redox state of the heme cofactor has a substantial influence on autophosphorylation activity. Although reduced protein does not autophosphorylate, oxidized protein gives a strong autophosphorylation signal independent from bound external ligands. Based on its genomic localization, MA4561 is most likely a sensor kinase of a two-component system effecting regulation of the Mts system, a set of three homologous corrinoid/methyltransferase fusion protein isoforms involved in methyl sulfide metabolism. Consistent with this prediction, an M. acetivorans mutant devoid of MA4561 constitutively synthesized MtsF. On the basis of our results, we postulate a heme-based redox/dimethyl sulfide sensory function of MA4561 and propose to designate it MsmS (methyl sulfide methyltransferase-associated sensor).
机译:根据一项生物信息学研究,最初预测产甲烷的古细菌甲烷单胞菌(Methanosarcina acetivorans)的蛋白质MA4561是一种多域的植物色素样光敏激酶,可能与开环四吡咯结合。尽管我们能够显示重组产生和纯化的蛋白质不结合任何已知的植物色素发色团,但紫外可见光谱显示血红素四吡咯辅助因子的存在。与许多其他已知的含胞质血红素的蛋白质相反,血红素通过一个乙烯基侧链共价连接到第二个GAF域中的半胱氨酸656。该GAF结构域本身足以实现共价连接。共振拉曼光谱和磁性圆二色性数据支持六坐标血红素种类的模型,并具有五坐标结构的附加特征。血红素辅因子具有氧化还原活性,并能够根据氧化还原状态配位各种配体,如咪唑,二甲基硫醚和一氧化碳。有趣的是,血红素辅因子的氧化还原状态对自身磷酸化活性具有重要影响。尽管还原的蛋白质不会自磷酸化,但氧化的蛋白质会产生强的自磷酸化信号,而与结合的外部配体无关。根据其基因组定位,MA4561最有可能是影响Mts系统调节的两组分系统的传感器激酶,Mts系统是参与甲基硫醚代谢的三种同源类蛋白/甲基转移酶融合蛋白亚型的集合。与此预测一致,没有MA4561组成性合成的MtsF的乙酰丙酮杆菌突变体。根据我们的结果,我们假设MA4561的基于血红素的氧化还原/二甲基硫的感觉功能,并提议将其指定为MsmS(与甲基硫醚甲基转移酶相关的传感器)。

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