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D-多巴通过D-氨基酸氧化酶单向转化为L-多巴,随后再经多巴转氨酶作用。

D-dopa is unidirectionally converted to L-dopa by D-amino acid oxidase, followed by dopa transaminase.

作者信息

Wu Mei, Zhou Xiang-Jun, Konno Ryuichi, Wang Yong-Xiang

机构信息

Laboratory of Systems Pharmacology, School of Pharmacy, Shanghai Jiao Tong University, Shanghai, China.

出版信息

Clin Exp Pharmacol Physiol. 2006 Nov;33(11):1042-6. doi: 10.1111/j.1440-1681.2006.04484.x.

DOI:10.1111/j.1440-1681.2006.04484.x
PMID:17042912
Abstract
  1. Many studies have shown that administration of d-3, 4-dihydroxyphenylalanine (D-dopa) produces contralateral rotation in hemi-parkinsonian animals comparable to L-dopa, with less potency and slower onset. It was postulated that D-dopa was converted to L-dopa to produce these effects. 2. To investigate the postulated chiral inversion of D-dopa to L-dopa and the related mechanism, an enantiomeric separation method for D- and L-dopa using HPLC was first established. Then, rat kidney homogenates containing D-dopa or L-dopa were incubated and subjected to HPLC to detect traces of respective enantiomer generation. The mechanism of the chiral inversion of d-dopa was explored by direct measurement of the production of L-dopa in kidney homogenates. D-dopa incubations containing different concentrations of an inhibitor of D-amino acid oxidase (DAAO) and an inhibitor of dopa transaminase were measured for L-dopa generation using HPLC. The role of DAAO in the chiral inversion of D-dopa to L-dopa was further investigated by using purified DAAO and mutant ddY/DAAO- mouse kidney lacking DAAO activity. 3. In rat kidney homogenate, D-dopa was, indeed, converted to L-dopa, whereas L-dopa was not converted to D-dopa. Sodium benzoate, a selective inhibitor of DAAO, blocked L-dopa generation in a concentration-dependant manner. In contrast with kidney homogenates of wild-type ddY/DAAO+ mice, those of mutant ddY/DAAO- mice lacking DAAO activity did not convert D-dopa to L-dopa unless exogenous DAAO protein was added. Conversely, when carbidopa, an inhibitor of dopa transaminase, was added to the homogenates, significant inhibition of L-dopa production was noted. 4. These results prove the proposal that d-dopa undergoes unidirectional chiral inversion and further suggest that D-dopa is first oxidatively deaminated by DAAO to its alpha-keto acid and then transaminated by dopa transaminase to L-dopa.
摘要
  1. 许多研究表明,给予d-3,4-二羟基苯丙氨酸(D-多巴)会使半帕金森病动物产生与L-多巴相当的对侧旋转,但其效力较低且起效较慢。据推测,D-多巴转化为L-多巴才产生这些效应。2. 为了研究推测的D-多巴向L-多巴的手性转化及其相关机制,首先建立了一种使用高效液相色谱法(HPLC)分离D-多巴和L-多巴对映体的方法。然后,将含有D-多巴或L-多巴的大鼠肾脏匀浆进行孵育,并通过HPLC检测各自对映体生成的痕迹。通过直接测量肾脏匀浆中L-多巴的生成来探索D-多巴手性转化的机制。使用HPLC测量含有不同浓度D-氨基酸氧化酶(DAAO)抑制剂和多巴转氨酶抑制剂的D-多巴孵育物中L-多巴的生成。通过使用纯化的DAAO和缺乏DAAO活性的突变ddY/DAAO-小鼠肾脏,进一步研究了DAAO在D-多巴向L-多巴手性转化中的作用。3. 在大鼠肾脏匀浆中,D-多巴确实转化为L-多巴,而L-多巴未转化为D-多巴。DAAO的选择性抑制剂苯甲酸钠以浓度依赖性方式阻断L-多巴的生成。与野生型ddY/DAAO+小鼠的肾脏匀浆相比,缺乏DAAO活性的突变ddY/DAAO-小鼠的肾脏匀浆在不添加外源性DAAO蛋白的情况下不会将D-多巴转化为L-多巴。相反,当向匀浆中加入多巴转氨酶抑制剂卡比多巴时,L-多巴的生成受到显著抑制。4. 这些结果证实了D-多巴发生单向手性转化的推测,并进一步表明D-多巴首先被DAAO氧化脱氨生成其α-酮酸,然后由多巴转氨酶转氨生成L-多巴。

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