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研究溶液中的吡咯并喹啉醌种类和依赖镧系元素的甲醇脱氢酶。

Studies of pyrroloquinoline quinone species in solution and in lanthanide-dependent methanol dehydrogenases.

机构信息

Department of Chemistry, Ludwig-Maximilians-University Munich, Butenandtstraße 5 - 13, 81377 München, Germany.

Center for NanoScience, Ludwig-Maximilians-University Munich, Geschwister-Scholl Platz 1, 80539 München, Germany.

出版信息

Phys Chem Chem Phys. 2022 Jun 29;24(25):15397-15405. doi: 10.1039/d2cp00311b.

Abstract

Pyrroloquinoline quinone (PQQ) is a redox cofactor in calcium- and lanthanide-dependent alcohol dehydrogenases that has been known and studied for over 40 years. Despite its long history, many questions regarding its fluorescence properties, speciation in solution and in the active site of alcohol dehydrogenase remain open. Here we investigate the effects of pH and temperature on the distribution of different PQQ species (HPQQ to PQQ in addition to water adducts and in complex with lanthanides) with NMR and UV-Vis spectroscopy as well as time-resolved laser-induced fluorescence spectroscopy (TRLFS). Using a europium derivative from a new, recently-discovered class of lanthanide-dependent methanol dehydrogenase (MDH) enzymes, we utilized two techniques to monitor Ln binding to the active sites of these enzymes. Employing TRLFS, we were able to follow Eu(III) binding directly to the active site of MDH using its luminescence and could quantify three Eu(III) states: Eu(III) in the active site of MDH, but also in solution as PQQ-bound Eu(III) and in the aquo-ion form. Additionally, we used the antenna effect to study PQQ and simultaneously Eu(III) in the active site.

摘要

吡咯并喹啉醌 (PQQ) 是一种在钙和镧系元素依赖的醇脱氢酶中起氧化还原辅助因子作用的物质,人们对其已经了解了 40 多年,并一直在进行研究。尽管历史悠久,但关于其荧光性质、在溶液中和醇脱氢酶活性部位的形态仍存在许多问题尚未解决。在这里,我们使用 NMR 和 UV-Vis 光谱以及时间分辨激光诱导荧光光谱(TRLFS)研究了 pH 值和温度对不同 PQQ 物种(HPQQ 到 PQQ 以及水加合物和与镧系元素形成的复合物)分布的影响。我们使用一种来自最近发现的一类新型镧系元素依赖甲醇脱氢酶(MDH)酶的铕衍生物,利用两种技术来监测 Ln 与这些酶的活性部位的结合。通过 TRLFS,我们能够直接监测 MDH 活性部位的 Eu(III)结合,利用其发光特性,并定量三种 Eu(III)状态:MDH 活性部位中的 Eu(III)、与 PQQ 结合的 Eu(III)在溶液中以及水合离子形式。此外,我们还利用天线效应来研究活性部位中的 PQQ 和同时存在的 Eu(III)。

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