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遗传性红细胞磷酸果糖激酶缺乏症:分子机制

Inherited erythrocyte phosphofructokinase deficiency: molecular mechanism.

作者信息

Etiemble J, Picat C, Siméon J, Blatrix C, Boivin P

出版信息

Hum Genet. 1980;55(3):383-90. doi: 10.1007/BF00290222.

Abstract

Erythrocyte PFK activity 50--60% that of normal controls was found in a mother and her son, without muscular or hematological symptoms. The PFK activity of the mother's muscle was normal in fresh preparations and partially unstable to storage at 4 degrees C. Electrophoresis of muscle PFK revealed two bands, on normal and one abnormal with an anodic mobility greater than normal. Both patients were characterized as heterozygotes for an unstable muscle PFK. Unstable M'subunits disappeared in erythrocytes which are old cells devoid fo protein synthesis. Consequently an increased E/M subunit ratio leads to a distribution of the five isozymes different from that of normal erythrocytes. In these patients, we observed a loss of the M4 enzyme together with an increase in the E4 isozyme. The kinetic and immunologic data were compatible with these modifications. Isoelectric focusing of hemolysates from the two patients revealed an acidification of the main activity band, suggesting that an increase in E4 isozyme resulted in a change of the total electric charge.

摘要

在一位母亲及其儿子身上发现红细胞磷酸果糖激酶(PFK)活性为正常对照的50%-60%,且无肌肉或血液学症状。母亲肌肉的PFK活性在新鲜制剂中正常,但在4℃储存时部分不稳定。肌肉PFK的电泳显示两条带,一条正常,一条异常,阳极迁移率高于正常。两名患者均被鉴定为不稳定肌肉PFK的杂合子。不稳定的M亚基在缺乏蛋白质合成的衰老红细胞中消失。因此,E/M亚基比例增加导致五种同工酶的分布与正常红细胞不同。在这些患者中,我们观察到M4酶缺失,同时E4同工酶增加。动力学和免疫学数据与这些改变相符。对两名患者的溶血产物进行等电聚焦显示主要活性带酸化,表明E4同工酶增加导致总电荷发生变化。

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