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碱性磷酸酶的非酶糖基化会改变其生物学特性。

Non-enzymatic glycosylation of alkaline phosphatase alters its biological properties.

作者信息

McCarthy A D, Cortizo A M, Giménez Segura G, Bruzzone L, Etcheverry S B

机构信息

Cátedra de Bioquímica Patológica, Facultad de Ciencias Exactas, Universidad Nacional de la Plata, Argentina.

出版信息

Mol Cell Biochem. 1998 Apr;181(1-2):63-9. doi: 10.1023/a:1006857309142.

Abstract

Hyperglycaemia in poorly controlled diabetic patients induces non-enzymatic glycosylation (glycation) of proteins, altering their structure and physiological bioactivity. Alkaline phosphatase (ALP) is a membrane-bound exoenzyme which faces the extracellular compartment. We have investigated the glycation of intestinal alkaline phosphatase in vitro and the consequences of such molecular modifications on certain structural and functional characteristics. The effect of glycation on alkaline phosphatase specific activity was determined after incubation of the enzyme with different sugars for various periods of time. The formation of early reversible glycation products was determined by the measurement of fructosamine levels, while the appearance of advanced glycation end products was estimated by spectrofluorometric analysis. A decrease in the specific activity of ALP was associated both with an increase in fructosamine levels and with the appearance of AGE-characteristic fluorescence. Changes in these parameters were found to depend on the incubation time, and on the concentration and glycating capability of the sugar employed. Co-incubation with aminoguanidine slowed down the appearance of protein-linked fluorescence, and additionally curbed the decrease in enzymatic specific activity. A significant correlation between the levels of ALP-fructosamine and ALP-advanced glycation end product was observed. Patterns of protein bands fractionated by SDS-PAGE were essentially identical for the nonglycated controls and the glycated samples. The electrophoretic mobility of the band of alkaline phosphatase on cellulose acetate gels increased as a function of the incubation time and the glycosylating power of the carbohydrate used. The present study provides evidence for the in vitro glycation of alkaline phosphatase, and for the consecutive alteration of its activity and structure.

摘要

血糖控制不佳的糖尿病患者体内的高血糖会诱导蛋白质发生非酶糖基化(糖化),改变其结构和生理生物活性。碱性磷酸酶(ALP)是一种面向细胞外区室的膜结合外切酶。我们研究了肠碱性磷酸酶的体外糖化作用以及这种分子修饰对某些结构和功能特性的影响。在酶与不同糖类孵育不同时间后,测定糖化对碱性磷酸酶比活性的影响。通过测量果糖胺水平来确定早期可逆糖化产物的形成,同时通过荧光光谱分析来估计晚期糖化终产物的出现。碱性磷酸酶比活性的降低与果糖胺水平的升高以及AGE特征性荧光的出现均相关。发现这些参数的变化取决于孵育时间以及所用糖类的浓度和糖化能力。与氨基胍共同孵育减缓了蛋白质连接荧光的出现,并且还抑制了酶比活性的降低。观察到碱性磷酸酶-果糖胺水平与碱性磷酸酶-晚期糖化终产物之间存在显著相关性。通过SDS-PAGE分离的蛋白条带模式在未糖化对照和糖化样品中基本相同。碱性磷酸酶条带在醋酸纤维素凝胶上的电泳迁移率随孵育时间和所用碳水化合物的糖基化能力而增加。本研究为碱性磷酸酶的体外糖化作用以及其活性和结构的连续改变提供了证据。

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