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链脲佐菌素诱导的糖尿病大鼠晶状体中的谷胱甘肽、晶状体蛋白糖基化及晶状体蛋白的电泳图谱

Lens glutathione, lens protein glycation and electrophoretic patterns of lens proteins in STZ induced diabetic rats.

作者信息

Yarat A, Uğuz Z, Ustünel A, Emekli N

机构信息

Marmara University, Faculty of Dentistry, Department of Biochemistry, Istanbul, Turkey.

出版信息

Glycoconj J. 1995 Oct;12(5):622-6. doi: 10.1007/BF00731256.

Abstract

As diabetes is a very complex disease, with the pathological symptoms varying with age, diabetic type and means of control, it still warrants many in vivo and in vitro studies. During hyperglycaemia, increases in the sorbitol pathway, nonenzymatic glycosylation of lens proteins and damage to antioxidant systems have been reported to cause opacification of the lens leading to cataract formation. In this study, intracapsular extracts of lenses from STZ induced diabetic female rats were examined. Total protein, glutathione and nonenzymatic glycosylation were determined by the Lowry, Ellman reagent and thiobarbituric acid methods respectively. Laemmli protein electrophoresis was also carried out on the lens homogenates. After a period of as short as 5 weeks, a decrease in lens glutathione, and an increase in nonenzymatic glycosylation of lens proteins were found. The electrophoresis showed an increase in proteins of high molecular weight.

摘要

由于糖尿病是一种非常复杂的疾病,其病理症状会因年龄、糖尿病类型和控制方式的不同而有所变化,因此仍需要进行许多体内和体外研究。据报道,在高血糖期间,山梨醇途径的增加、晶状体蛋白的非酶糖基化以及抗氧化系统的损伤会导致晶状体混浊,进而形成白内障。在本研究中,对链脲佐菌素诱导的糖尿病雌性大鼠晶状体的囊内提取物进行了检测。分别采用Lowry法、Ellman试剂法和硫代巴比妥酸法测定总蛋白、谷胱甘肽和非酶糖基化。还对晶状体匀浆进行了Laemmli蛋白电泳。在短短5周的时间内,就发现晶状体谷胱甘肽减少,晶状体蛋白的非酶糖基化增加。电泳显示高分子量蛋白质增加。

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