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值得关注的四氢生物蝶呤供体醌型二氢生物蝶呤的自动氧化动力学。

Autoxidation Kinetics of Tetrahydrobiopterin-Giving Quinonoid Dihydrobiopterin the Consideration It Deserves.

机构信息

Institut de Chimie Physique, CNRS UMR 8000, Université Paris-Saclay, 91405 Orsay, France.

Faculté de Médecine, Institut du Cerveau et de la Moëlle Épinière, Sorbonne Université, UMR S 1127, Inserm U 1127, UMR CNRS 7225, F-75013 Paris, France.

出版信息

Molecules. 2023 Jan 28;28(3):1267. doi: 10.3390/molecules28031267.

Abstract

In humans, tetrahydrobiopterin (H4Bip) is the cofactor of several essential hydroxylation reactions which dysfunction cause very serious diseases at any age. Hence, the determination of pterins in biological media is of outmost importance in the diagnosis and monitoring of H4Bip deficiency. More than half a century after the discovery of the physiological role of H4Bip and the recent advent of gene therapy for dopamine and serotonin disorders linked to H4Bip deficiency, the quantification of quinonoid dihydrobiopterin (qH2Bip), the transient intermediate of H4Bip, has not been considered yet. This is mainly due to its short half-life, which goes from 0.9 to 5 min according to previous studies. Based on our recent disclosure of the specific MS/MS transition of qH2Bip, here, we developed an efficient HPLC-MS/MS method to achieve the separation of qH2Bip from H4Bip and other oxidation products in less than 3.5 min. The application of this method to the investigation of H4Bip autoxidation kinetics clearly shows that qH2Bip's half-life is much longer than previously reported, and mostly longer than that of H4Bip, irrespective of the considered experimental conditions. These findings definitely confirm that an accurate method of H4Bip analysis should include the quantification of qH2Bip.

摘要

在人类中,四氢生物蝶呤(H4Bip)是几种必需羟化反应的辅助因子,其功能障碍会导致任何年龄都非常严重的疾病。因此,在 H4Bip 缺乏症的诊断和监测中,生物介质中蝶呤的测定至关重要。在发现 H4Bip 的生理作用半个多世纪后,以及最近出现针对与 H4Bip 缺乏相关的多巴胺和 5-羟色胺紊乱的基因治疗之后,还没有考虑到醌型二氢生物蝶呤(qH2Bip)的定量,qH2Bip 是 H4Bip 的瞬时中间体。这主要是由于其半衰期短,根据以前的研究,半衰期从 0.9 到 5 分钟不等。基于我们最近对 qH2Bip 特异性 MS/MS 跃迁的揭示,在这里,我们开发了一种高效的 HPLC-MS/MS 方法,能够在不到 3.5 分钟的时间内将 qH2Bip 从 H4Bip 和其他氧化产物中分离出来。该方法在 H4Bip 自动氧化动力学研究中的应用清楚地表明,qH2Bip 的半衰期比以前报道的要长得多,而且在考虑到的实验条件下,qH2Bip 的半衰期大多比 H4Bip 长。这些发现肯定证实,H4Bip 分析的准确方法应该包括 qH2Bip 的定量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cfc/9921404/cce32cacfac4/molecules-28-01267-g001.jpg

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