Fujii H, Miwa S, Tani K, Takegawa S, Fujinami N, Takahashi K, Nakayama S, Konno M, Sato T
Hum Genet. 1981;58(4):405-7. doi: 10.1007/BF00282823.
Two new glucose 6-phosphate dehydrogenase (G6PD) variants associated with chronic nonspherocytic hemolytic anemia were discovered, G6PD Kobe was found in a 16-year-old male associated with hemolytic crisis after upper respiratory infection. The enzyme activity of the variant was about 22% of that of the normal enzyme. The main enzymatic characteristics were slower than normal anodal electrophoretic mobility, high Km G6P, increased thermal-instability, an acidic pH optimum, and an extremely increased affinity for the substrate analogue, galactose 6-phosphate (Gal-6P). G6PD Sapporo was found in a 3-year-old male associated with drug-induced hemolysis. The enzyme activity was extremely low, being 3.6% of normal. In addition, this variant showed high Ki NADPH and thermal-instability. G6PD Kobe utilized the artificial substrate Gal-6P effectively as compared with the common natural substrate, glucose 6-phosphate. In G6PD Sapporo, NADPH could not exert the effect of product inhibition. The structural changes of these variants are expected to occur at the portions inducing conformational changes of the substrate binding site of the enzyme.
发现了两种与慢性非球形细胞溶血性贫血相关的新型葡萄糖-6-磷酸脱氢酶(G6PD)变体,在一名16岁男性中发现了G6PD神户变体,该男性在上呼吸道感染后出现溶血性危机。该变体的酶活性约为正常酶的22%。其主要酶学特征包括阳极电泳迁移率比正常慢、对葡萄糖-6-磷酸(G6P)的米氏常数(Km)高、热稳定性增加、最适pH呈酸性以及对底物类似物6-磷酸半乳糖(Gal-6P)的亲和力极度增加。在一名3岁男性中发现了G6PD札幌变体,该男性与药物诱导的溶血有关。其酶活性极低,仅为正常的3.6%。此外,该变体表现出高的NADPH抑制常数(Ki)和热不稳定性。与常见的天然底物G6P相比,G6PD神户变体能有效利用人工底物Gal-6P。在G6PD札幌变体中,NADPH不能发挥产物抑制作用。预计这些变体的结构变化发生在诱导酶底物结合位点构象变化的部位。