首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Specific genetic deficiencies of the A and B isoenzymes of monoamine oxidase are characterized by distinct neurochemical and clinical phenotypes.
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Specific genetic deficiencies of the A and B isoenzymes of monoamine oxidase are characterized by distinct neurochemical and clinical phenotypes.

机译:单胺氧化酶的A和B同工酶的特定遗传缺陷的特征在于明显的神经化学和临床表型。

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摘要

Monoamine oxidase (MAO) exists as two isoenzymes and plays a central role in the metabolism of monoamine neurotransmitters. In this study we compared the neurochemical phenotypes of previously described subjects with genetically determined selective lack of MAO-A or a lack of both MAO-A and MAO-B with those of two subjects with a previously described X chromosome microdeletion in whom we now demonstrate selective MAO-B deficiency. Mapping of the distal deletion breakpoint demonstrates its location in intron 5 of the MAO-B gene, with the deletion extending proximally into the Norrie disease gene. In contrast to the borderline mental retardation and abnormal behavioral phenotype in subjects with selective MAO-A deficiency and the severe mental retardation in patients with combined MAO-A/MAO-B deficiency and Norrie disease, the MAO-B-deficient subjects exhibit neither abnormal behavior nor mental retardation. Distinct neurochemical profiles characterize the three groups of MAO-deficient patients. In MAO-A-deficient subjects, there is a marked decrease in deaminated catecholamine metabolites and a concomitant marked elevation of O-methylated amine metabolites. These neurochemical changes are only slightly exaggerated in patients with combined lack of MAO-A and MAO-B. In contrast, the only biochemical abnormalities detected in subjects with the MAO-B gene deletion are a complete absence of platelet MAO-B activity and an increased urinary excretion of phenylethylamine. The differences in neurochemical profiles indicate that, under normal conditions, MAO-A is considerably more important than MAO-B in the metabolism of biogenic amines, a factor likely to contribute to the different clinical phenotypes.
机译:单胺氧化酶(MAO)作为两种同工酶存在,在单胺神经递质的代谢中起着核心作用。在这项研究中,我们比较了先前描述的受试者的神经化学表型和遗传确定的选择性缺乏MAO-A或同时缺乏MAO-A和MAO-B的神经化学表型与先前描述的X染色体微缺失的两名受试者的神经化学表型,我们在其中进行了证明选择性MAO-B缺乏症。远端缺失断点的定位显示了其在MAO-B基因内含子5中的位置,该缺失向近端延伸到诺里氏病基因中。与选择性MAO-A缺乏症患者的边缘性智力低下和异常行为表型以及MAO-A / MAO-B缺乏症合并Norrie病患者的严重智力低下相比,MAO-B缺乏者均未表现出异常行为也不是智力低下。不同的神经化学特征描述了三组MAO缺陷患者。在缺乏MAO-A的受试者中,脱氨基儿茶酚胺代谢物显着减少,同时O-甲基化胺代谢物显着升高。这些神经化学变化仅在合并缺乏MAO-A和MAO-B的患者中被略微夸大。相反,在具有MAO-B基因缺失的受试者中唯一检测到的生化异常是血小板MAO-B活性完全不存在和苯乙胺的尿排泄增加。神经化学特征的差异表明,在正常条件下,MAO-A在生物胺的代谢中比MAO-B更为重要,生物胺可能是导致不同临床表型的因素。

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