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正常及变异型葡萄糖-6-磷酸脱氢酶的体内和体外活性之间的矛盾。

A contradiction between in vivo and in vitro activities of normal and variant glucose 6-phosphate dehydrogenase.

作者信息

Yoshida A

出版信息

Hemoglobin. 1980;4(5-6):769-80. doi: 10.3109/03630268008997745.

Abstract

The presumed "physiologic activity" of normal glucose 6-phosphate dehydrogenase (G6PD), i.e. activity assayed in the presence of physiologic concentrations of ATP, 2,3-diphosphoglycerate, glucose 6-phosphate, NADP and NADPH in the normal red cells, is comparable to shunt pathway activity of intact normal red cells. In contrast, the presumed "physiologic activity" of G6PD variants associated with enzyme deficiency (Gd A- and Gd Mediterranean) is one order of magnitude higher than actual shunt pathway activity of the variant red cells. The difference of kinetic parameters of the enzyme in artificial buffer media and presumed physiologic medium in red cells cannot explain the discrepancy. The apparent discrepancy could be attributed either to (a) over-estimation of NADP and under-estimation of NADPH concentrations in the G6PD deficient red cells due to rapid oxidation of NADPH to NADP in preparation of hemolysate, or to (b) a large portion of NADP which accumulated in the G6PD deficient red cells binds with cellular components of intact red cells and is not available as substrate for G6PD.

摘要

正常葡萄糖6-磷酸脱氢酶(G6PD)的假定“生理活性”,即在正常红细胞中于生理浓度的ATP、2,3-二磷酸甘油酸、6-磷酸葡萄糖、NADP和NADPH存在下测定的活性,与完整正常红细胞的旁路途径活性相当。相比之下,与酶缺乏相关的G6PD变体(Gd A-和Gd地中海型)的假定“生理活性”比变体红细胞的实际旁路途径活性高一个数量级。在人工缓冲介质和红细胞中假定的生理介质中酶的动力学参数差异无法解释这种差异。这种明显的差异可能归因于:(a)由于溶血产物制备过程中NADPH迅速氧化为NADP,导致G6PD缺乏的红细胞中NADP估计过高而NADPH浓度估计过低;或者(b)在G6PD缺乏的红细胞中积累的大部分NADP与完整红细胞的细胞成分结合,不能作为G6PD的底物。

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