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人血浆和胆汁中的γ-谷氨酰转移酶组分:特性与生物合成

Gamma-glutamyltransferase fractions in human plasma and bile: characteristic and biogenesis.

作者信息

Fornaciari Irene, Fierabracci Vanna, Corti Alessandro, Aziz Elawadi Hassan, Lorenzini Evelina, Emdin Michele, Paolicchi Aldo, Franzini Maria

机构信息

Department of Biology, University of Pisa, Pisa, Italy.

Department of Translational Research and New Technologies in Medicine and Surgery, University of Pisa, Pisa, Italy.

出版信息

PLoS One. 2014 Feb 12;9(2):e88532. doi: 10.1371/journal.pone.0088532. eCollection 2014.

Abstract

Total plasma gamma-glutamyltransferase (GGT) activity is a sensitive, non-specific marker of liver dysfunction. Four GGT fractions (b-, m-, s-, f-GGT) were described in plasma and their differential specificity in the diagnosis of liver diseases was suggested. Nevertheless fractional GGT properties have not been investigated yet. The aim of this study was to characterize the molecular nature of fractional GGT in both human plasma and bile. Plasma was obtained from healthy volunteers; whereas bile was collected from patients undergoing liver transplantation. Molecular weight (MW), density, distribution by centrifugal sedimentation and sensitivity to both detergent (deoxycholic acid) and protease (papain) were evaluated. A partial purification of b-GGT was obtained by ultracentrifugation. Plasma b-GGT fraction showed a MW of 2000 kDa and a density between 1.063-1.210 g/ml. Detergent converted b-GGT into s-GGT, whereas papain alone did not produce any effect. Plasma m-GGT and s-GGT showed a MW of 1,000 and 200 kDa, and densities between 1.006-1.063 g/ml and 1.063-1.210 g/ml respectively. Both fractions were unaffected by deoxycholic acid, while GGT activity was recovered into f-GGT peak after papain treatment. Plasma f-GGT showed a MW of 70 kDa and a density higher than 1.21 g/ml. We identified only two chromatographic peaks, in bile, showing similar characteristics as plasma b- and f-GGT fractions. These evidences, together with centrifugal sedimentation properties and immunogold electronic microscopy data, indicate that b-GGT is constituted of membrane microvesicles in both bile and plasma, m-GGT and s-GGT might be constituted of bile-acid micelles, while f-GGT represents the free-soluble form of the enzyme.

摘要

总血浆γ-谷氨酰转移酶(GGT)活性是肝功能障碍的一个敏感、非特异性标志物。血浆中描述了四种GGT组分(b-GGT、m-GGT、s-GGT、f-GGT),并提示了它们在肝病诊断中的差异特异性。然而,尚未对GGT组分的特性进行研究。本研究的目的是表征人血浆和胆汁中GGT组分的分子性质。血浆取自健康志愿者;而胆汁则取自接受肝移植的患者。评估了分子量(MW)、密度、离心沉降分布以及对去污剂(脱氧胆酸)和蛋白酶(木瓜蛋白酶)的敏感性。通过超速离心对b-GGT进行了部分纯化。血浆b-GGT组分的分子量为2000 kDa,密度在1.063 - 1.210 g/ml之间。去污剂将b-GGT转化为s-GGT,而单独的木瓜蛋白酶没有任何作用。血浆m-GGT和s-GGT的分子量分别为1000和200 kDa,密度分别在1.006 - 1.063 g/ml和1.063 - 1.210 g/ml之间。这两个组分均不受脱氧胆酸影响,而木瓜蛋白酶处理后GGT活性恢复到f-GGT峰中。血浆f-GGT的分子量为70 kDa,密度高于1.21 g/ml。我们在胆汁中仅鉴定出两个色谱峰,其特征与血浆b-和f-GGT组分相似。这些证据,连同离心沉降特性和免疫金电子显微镜数据表明,胆汁和血浆中的b-GGT均由膜微泡构成,m-GGT和s-GGT可能由胆汁酸微团构成,而f-GGT代表酶的游离可溶形式。

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