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分子伴侣DnaK与在大肠杆菌中产生的葡萄球菌蛋白A衍生物之间的体外复合物形成及其在DnaK纯化中的应用。

In vitro complex-formation between the molecular chaperone DnaK and staphylococcal protein A derivatives produced in Escherichia coli and its use in the purification of DnaK.

作者信息

Gustavsson K, Bergman T, Veide A, Enfors S O

机构信息

Department of Biochemistry and Biotechnology, Royal Institute of Technology, Stockholm, Sweden.

出版信息

Biotechnol Appl Biochem. 1997 Apr;25(2):173-80.

PMID:9127490
Abstract

Complex-formation between a truncated staphylococcal Protein A produced in Escherichia coli and a native E coli molecular chaperone, DnaK, can be used for the purification of DnaK by IgG-affinity chromatography. The half-time constant for in vitro formation of the Protein A-DnaK complex is about 14 min. Complex-formation in the presence of ATP is faster, but pre-incubation of DnaK with ATP decreases the final amount of the complex. A second complex with a slower migration on native PAGE is formed when the ratio of DnaK to Protein A is increased. A derivative of Protein A, ZZ, which essentially contains only two modified domains of Protein A, did not bind DnaK. After insertion of a tryptophan-rich peptide close to the C-terminus, the resulting protein, ZZT3, became able to bind DnaK. The binding of these three proteins to DnaK correlates with proteolysis in E coli, indicating a possible role for the binding of DnaK in the control of proteolysis.

摘要

在大肠杆菌中产生的截短型葡萄球菌蛋白A与天然大肠杆菌分子伴侣DnaK之间形成的复合物,可用于通过IgG亲和层析法纯化DnaK。蛋白A-DnaK复合物体外形成的半衰期常数约为14分钟。在ATP存在下复合物的形成更快,但DnaK与ATP预孵育会降低复合物的最终量。当DnaK与蛋白A的比例增加时,会形成在天然聚丙烯酰胺凝胶电泳上迁移较慢的第二种复合物。蛋白A的衍生物ZZ基本上只包含蛋白A的两个修饰结构域,它不与DnaK结合。在靠近C末端插入富含色氨酸的肽后,所得蛋白ZZT3能够结合DnaK。这三种蛋白与DnaK的结合与大肠杆菌中的蛋白水解相关,表明DnaK的结合在蛋白水解控制中可能发挥作用。

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