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中间型枫糖尿症的一种独特变体。

A distinct variant of intermediate maple syrup urine disease.

作者信息

Gonzalez-Rios M C, Chuang D T, Cox R P, Schmidt K, Knopf K, Packman S

出版信息

Clin Genet. 1985 Feb;27(2):153-9. doi: 10.1111/j.1399-0004.1985.tb00203.x.

Abstract

Branched chain alpha-ketoacid dehydrogenase (BCKAD) deficiency, or maple syrup urine disease (MSUD), can be categorized as classical, intermediate, intermittent or thiamine responsive, based on generally concordant in vitro BCKAD activity and severity of phenotype. We present clinical and enzymatic data on a boy with intermediate maple syrup urine disease, and suggest that he represents a novel category of mutation. He presented at age 10 months in ketoacidotic coma, with a history of irritability, poor feeding and growth and developmental delay. Branched chain amino acid restriction effected normal growth and developmental parameters by age 42 months. In contrast to previous patients with intermediate MSUD, his fibroblasts and fibroblast extracts failed to decarboxylate [1-14C]-alpha-ketoisovalerate (KIV). The defect is not in mitochondrial transport of substrate, but rather in the catalytic activity of the E1 component of the BCKAD. Disrupted cells of the proband exhibited negligible BCKAD activity over a wide range of keto acid substrate concentrations, irrespective of the presence of added thiamine pyrophosphate (TPP). These results differ from the sigmoidal kinetics observed using classical MSUD extracts, and the hyperbolic kinetics with control preparations under the same assay conditions. We propose that the structurally altered enzyme possesses reduced but not negligible activity in vivo, and exists as an unstable complex in vitro under assay conditions used, even in the presence of added TPP.

摘要

支链α-酮酸脱氢酶(BCKAD)缺乏症,即枫糖尿症(MSUD),根据体外BCKAD活性与表型严重程度的大致一致性,可分为经典型、中间型、间歇型或硫胺素反应型。我们报告了一名患有中间型枫糖尿症男孩的临床和酶学数据,并认为他代表了一种新的突变类型。他在10个月大时因酮症酸中毒昏迷就诊,有易怒、喂养和生长不良以及发育迟缓的病史。通过限制支链氨基酸,到42个月大时其生长和发育参数恢复正常。与之前患有中间型MSUD的患者不同,他的成纤维细胞和成纤维细胞提取物无法使[1-14C]-α-酮异戊酸(KIV)脱羧。缺陷不在于底物的线粒体转运,而在于BCKAD的E1成分的催化活性。先证者的破碎细胞在广泛的酮酸底物浓度范围内表现出可忽略不计的BCKAD活性,无论是否添加硫胺素焦磷酸(TPP)。这些结果不同于使用经典MSUD提取物观察到的S形动力学,以及在相同测定条件下对照制剂的双曲线动力学。我们提出,结构改变的酶在体内具有降低但并非可忽略不计的活性,并且在所用的测定条件下,即使添加了TPP,在体外也以不稳定复合物的形式存在。

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