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另外两名患者线粒体乙酰乙酰辅酶A硫解酶缺乏症的分子、生化及临床特征

Molecular, biochemical, and clinical characterization of mitochondrial acetoacetyl-coenzyme A thiolase deficiency in two further patients.

作者信息

Wakazono A, Fukao T, Yamaguchi S, Hori T, Orii T, Lambert M, Mitchell G A, Lee G W, Hashimoto T

机构信息

Department of Pediatrics, Gifu University School of Medicine, Japan.

出版信息

Hum Mutat. 1995;5(1):34-42. doi: 10.1002/humu.1380050105.

Abstract

The molecular basis of mitochondrial acetoacetyl-CoA thiolase (T2) deficiency was studied in two patients (GK11 and GK16). Fibroblasts from each patient had detectable immunoreactive T2 polypeptide (CRM). In pulse-chase experiments, fibroblasts from GK11 had two types of CRM: one (type I CRM) disappeared after a 24-hr chase and migrated more slowly than that of the normal control; the other (type II CRM) was detected with a small amount even after a 72-hr chase and had normal electrophoretic mobility. GK16's fibroblasts had a CRM (type III) which was also detectable even after a 72-hr chase and showed a slower mobility than type I CRM. By analyzing amplified cDNA and genomic fragments, we showed that both patients are genetic compounds; GK11 for the mutations N158D and T297M, and GK16 for the mutations A301P and IVS8 (+1). Expression analyses confirmed that mutant T2 subunits with N158D, T297M, and A301P correspond to type I, II, and III CRM, respectively. Among them, only the mutant T2 polypeptide with T297M appeared to have a detectable residual activity, in spite of its instability. Cotransfection of two cDNAs containing N158D and T297M suggested that heterotetramer formation reduces residual activity in GK11 cells.

摘要

对两名患者(GK11和GK16)线粒体乙酰乙酰辅酶A硫解酶(T2)缺乏症的分子基础进行了研究。每名患者的成纤维细胞均能检测到免疫反应性T2多肽(CRM)。在脉冲追踪实验中,GK11的成纤维细胞有两种类型的CRM:一种(I型CRM)在24小时追踪后消失,迁移速度比正常对照慢;另一种(II型CRM)即使在72小时追踪后仍能检测到少量,且电泳迁移率正常。GK16的成纤维细胞有一种CRM(III型),即使在72小时追踪后也能检测到,迁移速度比I型CRM慢。通过分析扩增的cDNA和基因组片段,我们发现两名患者都是遗传复合杂合子;GK11携带N158D和T297M突变,GK16携带A301P和IVS8(+1)突变。表达分析证实,携带N158D、T297M和A301P的突变T2亚基分别对应I型、II型和III型CRM。其中,只有携带T297M的突变T2多肽尽管不稳定,但似乎具有可检测到的残余活性。共转染含有N158D和T297M的两个cDNA表明,异源四聚体的形成降低了GK11细胞中的残余活性。

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