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人类UDP-半乳糖4-表异构酶致病突变的功能分析

Functional analysis of disease-causing mutations in human UDP-galactose 4-epimerase.

作者信息

Timson David J

机构信息

School of Biology & Biochemistry, Queen's University Belfast, Medical Biology Centre, Belfast, UK.

出版信息

FEBS J. 2005 Dec;272(23):6170-7. doi: 10.1111/j.1742-4658.2005.05017.x.

DOI:10.1111/j.1742-4658.2005.05017.x
PMID:16302980
Abstract

UDP-galactose 4-epimerase (GALE, EC 5.1.3.2) catalyses the interconversion of UDP-glucose and UDP-galactose. Point mutations in this enzyme are associated with the genetic disease, type III galactosemia, which exists in two forms - a milder, or peripheral, form and a more severe, or generalized, form. Recombinant wild-type GALE, and nine disease-causing mutations, have all been expressed in, and purified from, Escherichia coli in soluble, active forms. Two of the mutations (N34S and G319E) display essentially wild-type kinetics. The remainder (G90E, V94M, D103G, L183P, K257R, L313M and R335H) are all impaired in turnover number (k cat) and specificity constant (k cat/Km), with G90E and V94M (which is associated with the generalized form of galactosemia) being the most affected. None of the mutations results in a greater than threefold change in the Michaelis constant (Km). Protein-protein crosslinking suggests that none of the mutants are impaired in homodimer formation. The L183P mutation suffers from severe proteolytic degradation during expression and purification. N34S, G90E and D103G all show increased susceptibility to digestion in limited proteolysis experiments. Therefore, it is suggested that reduced catalytic efficiency and increased proteolytic susceptibility of GALE are causative factors in type III galactosemia. Furthermore, there is an approximate correlation between the severity of these defects in the protein structure and function, and the symptoms observed in patients.

摘要

UDP - 半乳糖4 - 表异构酶(GALE,EC 5.1.3.2)催化UDP - 葡萄糖和UDP - 半乳糖的相互转化。该酶的点突变与遗传性疾病III型半乳糖血症相关,III型半乳糖血症有两种形式——较轻的外周型和较严重的全身型。重组野生型GALE以及9种致病突变体均已在大肠杆菌中以可溶的活性形式表达并纯化。其中两种突变(N34S和G319E)表现出基本野生型的动力学特征。其余突变(G90E、V94M、D103G、L183P、K257R、L313M和R335H)的周转数(kcat)和特异性常数(kcat/Km)均受损,其中G90E和V94M(与全身型半乳糖血症相关)受影响最大。没有一个突变导致米氏常数(Km)有超过三倍的变化。蛋白质 - 蛋白质交联表明,没有一个突变体在同源二聚体形成方面受损。L183P突变在表达和纯化过程中遭受严重的蛋白水解降解。在有限蛋白酶解实验中,N34S、G90E和D103G对消化的敏感性均增加。因此,有人认为GALE催化效率降低和蛋白水解敏感性增加是III型半乳糖血症的致病因素。此外,蛋白质结构和功能中这些缺陷的严重程度与患者观察到的症状之间存在大致的相关性。

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