Piomelli S, Corash L M, Davenport D D, Miraglia J, Amorosi E L
J Clin Invest. 1968 Apr;47(4):940-8. doi: 10.1172/JCI105786.
A decreased level of glucose-6-phosphate dehydrogenase might result from decreased rate of synthesis, synthesis of an enzyme of lower catalytic efficiency, increased lability, or a combined mechanism. To test the hypothesis of increased lability, the rate of decline of the enzyme in vivo was measured in three groups of individuals, controls, Gd(-),A-males, and Gd(-), Mediterranean males, by the slope of decline of activity in fractions containing erythrocytes of progressively increasing mean age. These fractions were obtained by ultracentrifugation on a discontinuous density gradient of erythrocyte suspensions free of contaminating platelets and leukocytes. The rate of in vivo decline of pyruvate kinase (another age-dependent enzyme) was also measured and found very similar in the three groups. The in vivo decline of glucose-6-phosphate dehydrogenase was found to follow an exponential rate, with a half-life of 62 days for controls and 13 days for Gd(-),A- erythrocytes. The activity in normal reticulocytes was estimated at 9.7 U and in Gd(-),A- reticulocytes at 8.8 U. These estimates were confirmed by direct measurements in reticulocytes isolated from patients with extreme reticulocytosis. In Gd(-),Mediterranean erythrocytes activity could be demonstrated only in reticulocytes, which were estimated to average 1.4 U. The rate of decline is so extreme that no activity could be detected in mature erythrocytes. These data suggest that the glucose-6-phosphate dehydrogenase deficiency of both the Gd(A-) and the GdMediterranean variant results from different degrees of in vivo instability of the abnormal enzyme.
葡萄糖-6-磷酸脱氢酶水平降低可能是由于合成速率降低、催化效率较低的酶的合成、稳定性增加或综合机制所致。为了检验稳定性增加这一假说,通过含有平均年龄逐渐增加的红细胞的组分中活性下降的斜率,测量了三组个体(对照组、Gd(-),A-男性和Gd(-),地中海男性)体内该酶的下降速率。这些组分是通过对不含污染血小板和白细胞的红细胞悬液在不连续密度梯度上进行超速离心获得的。还测量了丙酮酸激酶(另一种年龄依赖性酶)的体内下降速率,发现三组非常相似。发现葡萄糖-6-磷酸脱氢酶的体内下降遵循指数速率,对照组红细胞的半衰期为62天,Gd(-),A-红细胞的半衰期为13天。正常网织红细胞中的活性估计为9.7 U,Gd(-),A-网织红细胞中的活性估计为8.8 U。这些估计通过对患有极高度网织红细胞增多症患者分离出的网织红细胞进行直接测量得到了证实。在Gd(-),地中海红细胞中,活性仅在网织红细胞中得以证实,估计平均为1.4 U。下降速率非常极端,以至于在成熟红细胞中未检测到活性。这些数据表明,Gd(A-)和Gd地中海变体的葡萄糖-6-磷酸脱氢酶缺乏均源于异常酶在体内不同程度的不稳定性。