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患有影响单胺氧化酶的X染色体缺失的诺里病患者的血浆胺氧化酶活性。

Plasma amine oxidase activities in Norrie disease patients with an X-chromosomal deletion affecting monoamine oxidase.

作者信息

Murphy D L, Sims K B, Karoum F, Garrick N A, de la Chapelle A, Sankila E M, Norio R, Breakefield X O

机构信息

Laboratory of Clinical Science, National Institute of Mental Health, Bethesda, MD.

出版信息

J Neural Transm Gen Sect. 1991;83(1-2):1-12. doi: 10.1007/BF01244447.

Abstract

Two individuals with an X-chromosomal deletion were recently found to lack the genes encoding monoamine oxidase type A (MAO-A) and MAO-B. This abnormality was associated with almost total (90%) reductions in the oxidatively deaminated urinary metabolites of the MAO-A substrate, norepinephrine, and with marked (100-fold) increases in an MAO-B substrate, phenylethylamine, confirming systemic functional consequences of the genetic enzyme deficiency. However, urinary concentrations of the deaminated metabolites of dopamine and serotonin (5-HT) were essentially normal. To investigate other deaminating systems besides MAO-A and MAO-B that might produce these metabolites of dopamine and 5-HT, we examined plasma amine oxidase (AO) activity in these two patients and two additional patients with the same X-chromosomal deletion. Normal plasma AO activity was found in all four Norrie disease-deletion patients, in four patients with classic Norrie disease without a chromosomal deletion, and in family members of patients from both groups. Marked plasma amine metabolite abnormalities and essentially absent platelet MAO-B activity were found in all four Norrie disease-deletion patients, but in none of the other subjects in the two comparison groups. These results indicate that plasma AO is encoded by gene(s) independent of those for MAO-A and MAO-B, and raise the possibility that plasma AO, and perhaps the closely related tissue AO, benzylamine oxidase, as well as other atypical AOs or MAOs encoded independently from MAO-A and MAO-B may contribute to the oxidative deamination of dopamine and 5-HT in humans.

摘要

最近发现两名患有X染色体缺失的个体缺乏编码单胺氧化酶A(MAO-A)和单胺氧化酶B(MAO-B)的基因。这种异常与MAO-A底物去甲肾上腺素的氧化脱氨基尿代谢物几乎完全(90%)减少以及MAO-B底物苯乙胺显著(100倍)增加有关,证实了这种遗传性酶缺乏的全身功能后果。然而,多巴胺和5-羟色胺(5-HT)的脱氨基代谢物的尿浓度基本正常。为了研究除MAO-A和MAO-B之外可能产生多巴胺和5-HT这些代谢物的其他脱氨基系统,我们检测了这两名患者以及另外两名患有相同X染色体缺失的患者的血浆胺氧化酶(AO)活性。在所有四名诺里病缺失患者、四名无染色体缺失的经典诺里病患者以及两组患者的家庭成员中均发现血浆AO活性正常。在所有四名诺里病缺失患者中均发现明显的血浆胺代谢物异常且血小板MAO-B活性基本缺失,但在两个对照组的其他受试者中均未发现。这些结果表明血浆AO由独立于MAO-A和MAO-B的基因编码,并提出了血浆AO以及可能与之密切相关的组织AO、苄胺氧化酶以及其他独立于MAO-A和MAO-B编码的非典型AO或MAO可能参与人类多巴胺和5-HT氧化脱氨基的可能性。

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