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肝脏胱抑素的糖基化:对其结构和功能的影响

Glycation of Liver Cystatin: Implication on its Structure and Function.

作者信息

Mustafa Mir Faisal, Bano Bilqees

机构信息

Department of Biochemistry, Faculty of Life Sciences, A.M.U., Aligarh, U.P, 202002, India.

出版信息

J Fluoresc. 2016 Sep;26(5):1743-53. doi: 10.1007/s10895-016-1866-4. Epub 2016 Jun 28.

Abstract

The increased level of reducing sugars and their derivatives in a diabetic condition has been the main cause of protein related complications. The changes in native state of proteins upon glycation induce loss in the function and structure of proteins. This further leads to cell damage and accumulation of immune system inducing AGE formation. Here in the present study cystatin was purified from liver (BLC) through affinity chromatography and was incubated with glucose, fructose and ribose. Changes were observed in the intensity of Trp absorption at 280 nm as well as AGE's specific fluorescence at 435 nm upon excitation at 370 nm to monitor the formation of BLC-sugar adducts. Protein intrinsic fluorescence showed marked conformational changes when BLC was incubated with D-ribose, glucose and fructose. Glycation with D-ribose induces BLC to misfold rapidly into an intermediate state retaining a low percentage of α-helical content compared to fructose and glucose as revealed by far-UV CD data. Furthermore, a caseinolytic assay of papain in presence of glycated liver cystatin showed decreased activity in the protein induced by these reducing sugars. Ribose had more effect on the structure as well as the function of liver cystatin followed by fructose and least for glucose. Absorption spectroscopy shows change in BLC and formation of AGE's. These results shows that liver cystatin-cathepsin imbalance is compromised in diabetic state which may lead to improper balance of proteinases leading to cirrhosis or liver damage.

摘要

糖尿病状态下还原糖及其衍生物水平的升高一直是蛋白质相关并发症的主要原因。糖基化作用导致蛋白质天然状态的改变,进而引起蛋白质功能和结构的丧失。这进一步导致细胞损伤以及诱导晚期糖基化终末产物(AGE)形成的免疫系统的积累。在本研究中,通过亲和色谱法从肝脏中纯化出胱抑素(BLC),并将其与葡萄糖、果糖和核糖一起孵育。通过监测在280nm处色氨酸吸收强度以及在370nm激发下435nm处AGE特异性荧光的变化,来观察BLC-糖加合物的形成。当BLC与D-核糖、葡萄糖和果糖一起孵育时,蛋白质固有荧光显示出明显的构象变化。远紫外圆二色光谱数据显示,与果糖和葡萄糖相比,D-核糖糖基化诱导BLC迅速错折叠成中间状态,保留较低百分比的α-螺旋含量。此外,在糖化肝脏胱抑素存在的情况下对木瓜蛋白酶进行酪蛋白水解分析,结果显示这些还原糖诱导的蛋白质活性降低。核糖对肝脏胱抑素的结构和功能影响更大,其次是果糖,对葡萄糖的影响最小。吸收光谱显示BLC发生变化并形成AGE。这些结果表明,糖尿病状态下肝脏胱抑素-组织蛋白酶失衡,这可能导致蛋白酶平衡失调,进而导致肝硬化或肝损伤。

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