首页> 美国卫生研究院文献>Biochemical Journal >Mechanistic studies on the dehydrogenases of methylotrophic bacteria. 1. The influence of substrate binding to reduced trimethylamine dehydrogenase on the intramolecular electron transfer between its prosthetic groups.
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Mechanistic studies on the dehydrogenases of methylotrophic bacteria. 1. The influence of substrate binding to reduced trimethylamine dehydrogenase on the intramolecular electron transfer between its prosthetic groups.

机译:甲基营养细菌脱氢酶的机理研究。 1.底物与还原的三甲胺脱氢酶的结合对其辅基之间分子内电子转移的影响。

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摘要

The trimethylamine dehydrogenase of bacterium W3A1 is reduced with the formation of a triplet state in which two electrons, derived from the substrate, are distributed between the [4Fe-4S] cluster and 6-S-cysteinyl-FMN semiquinone. In titration experiments at pH 8.5 about 1.0 mol of dimethylamine or 0.5 mol of trimethylamine per mol of the enzyme is required to titrate the enzyme to an endpoint. At pH values less than 8.0, however, an excess of trimethylamine is required to obtain maximal yield of the g = 4 e.p.r. signal, characteristic of the triplet state, or maximal absorbance at 365 nm which indicates formation of the flavin semiquinone. The binding of 0.86 mol of trimethylamine per mol of the enzyme could be detected by a gel chromatographic method. When the enzyme is titrated with dithionite in the presence of tetramethylammonium chloride, an endpoint is reached after the uptake of two electrons which give rise to the triplet state, whereas three electrons are consumed in the absence of tetramethylammonium chloride to reduce the enzyme completely. The enzyme is inhibited noncompetitively by tetramethylammonium chloride and the slopes of double reciprocal plots are a concave upwards function of inhibitor concentration. The data indicate the presence of a binding site for the substrate and other amines on the reduced enzyme which enhances the proportion of enzyme in the triplet state.
机译:细菌W3A1的三甲胺脱氢酶被还原为三重态,在该三重态中,两个来自底物的电子分布在[4Fe-4S]簇和6-S-半胱氨酰-FMN半醌之间。在pH 8.5的滴定实验中,每摩尔酶需要约1.0 mol二甲胺或0.5 mol三甲胺以将酶滴定至终点。然而,在pH值小于8.0的情况下,需要过量的三甲胺以获得最大的g = 4e.p.r的产率。信号,三重态的特征或在365 nm处的最大吸光度,表明形成了黄素半醌。可以通过凝胶色谱法检测每摩尔酶0.86摩尔三甲胺的结合。当在四甲基氯化铵存在下用连二亚硫酸盐滴定酶时,在吸收两个电子后达到一个三重态的终点达到了终点,而在没有四甲基氯化铵的情况下消耗了三个电子以完全还原该酶。该酶被氯化四甲基铵非竞争性抑制,并且双倒数图的斜率是抑制剂浓度的凹向上函数。数据表明在还原的酶上存在底物和其他胺的结合位点,其增加了三重态的酶的比例。

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