Kahn A, Buc H A, Girot R, Cottreau D, Griscelli C
Hum Genet. 1978 Feb 16;40(3):293-304. doi: 10.1007/BF00272190.
Two new deficient glucose-phosphate-isomerase (GPI) variants have been described in patients suffering from severe chronic hemolytic anemias. The patients' parents were consanguineous, such that the patients were true homozygotes for the mutated GPI genes. In both cases the main cause of the defect in enzyme activity was molecular instability of the mutated GPI molecules, their catalytic activity being nearly normal. GPI 'Paris' was characterized by a slow electrophoretic migration and, above all, a drastically altered affinity for the substrates glucose-6-phosphate (decreased) and fructose-6-phosphate (increased). GPI 'Enfants malades' exhibited a slightly reduced electrophoretic mobility, an abnormal curve of the activity in function of pH, and an abnormal ratio of maximal velocity in the backward direction (fructose-6-phosphate leads to glucose-6-phosphate) to that in the forward direction (glucose-6-phosphate leads to fructose-6-phosphate). No clear relation could be proved between the kinetic abnormalities of the mutant GPI variants on the one hand and the metabolic changes of the GPI-deficient red cells and the severity of hemolysis on the other. Finally we emphasized the possible role of the impairment of hexosemonophosphate pathway in the reduction of viability of the GPI-deficient red cells.
在患有严重慢性溶血性贫血的患者中,已发现两种新的葡萄糖磷酸异构酶(GPI)缺陷变体。患者的父母为近亲结婚,因此患者是突变GPI基因的真正纯合子。在这两种情况下,酶活性缺陷的主要原因是突变GPI分子的分子不稳定性,其催化活性几乎正常。GPI“巴黎型”的特征是电泳迁移缓慢,最重要的是,对底物葡萄糖-6-磷酸(降低)和果糖-6-磷酸(增加)的亲和力发生了巨大变化。GPI“患病儿童型”表现出电泳迁移率略有降低,活性随pH值变化的曲线异常,以及逆向(果糖-6-磷酸转化为葡萄糖-6-磷酸)最大速度与正向(葡萄糖-6-磷酸转化为果糖-6-磷酸)最大速度的异常比值。一方面,突变GPI变体的动力学异常与另一方面GPI缺陷红细胞的代谢变化和溶血严重程度之间没有明确的关系。最后,我们强调了磷酸己糖途径受损在降低GPI缺陷红细胞活力方面可能发挥的作用。