Goedert M, Jakes R
Medical Research Council Laboratory of Molecular Biology, Cambridge, UK.
EMBO J. 1990 Dec;9(13):4225-30. doi: 10.1002/j.1460-2075.1990.tb07870.x.
We have expressed six previously cloned isoforms of human microtubule-associated tau protein in Escherichia coli and purified them to homogeneity in a biologically active form. They range from 352 to 441 amino acids in length and differ from each other by the presence of three or four tandem repeats in the carboxy-terminal half and by the presence or absence of 29 or 58 amino acid inserts in the amino-terminus. When mixed together they gave a set of six bands on SDS-PAGE gels with apparent molecular weights of 48-67 kd and with a characteristic pattern of spacings. Four of these bands aligned with the major tau bands found in adult human cerebral cortex following perchloric acid extraction and alkaline phosphatase treatment. They consisted of isoforms with three repeats and no insertions, four repeats and no amino-terminal insertions and three- and four-repeat containing isoforms with the 29 amino acid insertion. In fetal human brain extracts treated with alkaline phosphatase one of the two major tau bands aligned with the three-repeat containing isoform with no insertions, whereas the molecular nature of the second major tau band remains to be established. The recombinant tau isoforms were biologically active at micromolar concentrations, as assessed by their ability to promote microtubule assembly. The rates of assembly were 2.5-3.0 times faster for isoforms containing four repeats when compared with three-repeat containing isoforms, with no significant contribution by the amino-terminal insertions.
我们已在大肠杆菌中表达了六种先前克隆的人微管相关tau蛋白异构体,并将它们纯化至同质的生物活性形式。它们的长度在352至441个氨基酸之间,彼此的差异在于羧基末端一半存在三个或四个串联重复,以及氨基末端存在或不存在29或58个氨基酸的插入片段。当它们混合在一起时,在SDS-PAGE凝胶上产生了一组六条带,表观分子量为48-67kd,具有特征性的间距模式。其中四条带与高氯酸提取和碱性磷酸酶处理后成人人类大脑皮层中发现的主要tau带对齐。它们由具有三个重复且无插入片段的异构体、四个重复且无氨基末端插入片段的异构体以及含有29个氨基酸插入片段的三重复和四重复异构体组成。在用碱性磷酸酶处理的胎儿人脑提取物中,两个主要tau带之一与无插入片段的含三个重复的异构体对齐,而第二个主要tau带的分子性质仍有待确定。通过其促进微管组装的能力评估,重组tau异构体在微摩尔浓度下具有生物活性。与含三个重复的异构体相比,含四个重复的异构体的组装速率快2.5-3.0倍,氨基末端插入片段没有显著贡献。