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牛β-1,4-半乳糖基转移酶缺失构建体在大肠杆菌中的表达:半胱氨酸134对其活性的重要性

Expression of deletion constructs of bovine beta-1,4-galactosyltransferase in Escherichia coli: importance of Cys134 for its activity.

作者信息

Boeggeman E E, Balaji P V, Sethi N, Masibay A S, Qasba P K

机构信息

Laboratory of Mathematical Biology, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892.

出版信息

Protein Eng. 1993 Sep;6(7):779-85. doi: 10.1093/protein/6.7.779.

Abstract

Bovine beta-1,4-galactosyltransferase (beta-1,4-GT; EC 2.4.1.90) belongs to the glycosyltransferase family and as such shares a general topology: an N-terminal cytoplasmic tail, a signal anchor followed by a stem region and a catalytic domain at the C-terminal end of the protein. cDNA constructs of the N-terminal deleted forms of beta-1,4-GT were prepared in pGEX-2T vector and expressed in E. coli as glutathione-S-transferase (GST) fusion proteins. Recombinant proteins accumulated within inclusion bodies as insoluble aggregates that were solubilized in 5 M guanidine HCl and required an 'oxido-shuffling' reagent for regeneration of the enzyme activity. The recombinant beta-1,4-GT, devoid of the GST domain, has 30-85% of the sp. act. of bovine milk beta-1,4-GT with apparent Kms for N-acetylglucosamine and UDP-galactose similar to those of milk enzyme. Deletion analyses show that both beta-1,4-GT and lactose synthetase activities remain intact even in the absence of the first 129 residues (pGT-d129). The activities are lost when either deletions extend up to residue 142 (pGT-d142) or Cys134 is mutated to Ser (pGT-d129C134S). These results suggest that the formation of a disulfide bond involving Cys134 holds the protein in a conformation that is required for enzymatic activity.

摘要

牛β-1,4-半乳糖基转移酶(β-1,4-GT;EC 2.4.1.90)属于糖基转移酶家族,因此具有一般的拓扑结构:N端细胞质尾巴、信号锚,随后是茎区以及位于蛋白质C端的催化结构域。制备了β-1,4-GT N端缺失形式的cDNA构建体,将其克隆到pGEX-2T载体中,并在大肠杆菌中作为谷胱甘肽-S-转移酶(GST)融合蛋白进行表达。重组蛋白以不溶性聚集体的形式积累在包涵体中,可在5 M盐酸胍中溶解,并且需要一种“氧化重排”试剂来恢复酶活性。去除GST结构域后的重组β-1,4-GT具有牛乳β-1,4-GT 30%-85%的比活性,其对N-乙酰葡糖胺和UDP-半乳糖的表观Km值与乳酶相似。缺失分析表明,即使缺失前129个残基(pGT-d129),β-1,4-GT和乳糖合成酶活性仍保持完整。当缺失延伸至第142个残基(pGT-d142)或Cys134突变为Ser(pGT-d129C134S)时,活性丧失。这些结果表明,涉及Cys134的二硫键的形成使蛋白质保持酶活性所需的构象。

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