Brennan E F, Rocha V
J Bacteriol. 1979 Dec;140(3):1116-9. doi: 10.1128/jb.140.3.1116-1119.1979.
Purified borohydride-reduced tryptophan synthase beta 2 protein (EC 4.2.1.20) from Escherichia coli and purified native beta 2 protein from Serratia marcescens were mixed and dissociated in urea. Removal of the urea resulted in random reassociation of the reduced and native beta monomers, forming interspecies hybrid beta 2 molecules. Interspecies hybrid beta 2 protein molecules of the reciprocal composition were also formed. Interspecies hybrid reconstituted molecules were formed with approximately the same efficiency as intraspecies reconstituted molecules (reduced and native monomers from the same species) indicating no particular preference for reassembly. The data provide evidence that the structural region of interaction between the beta monomers necessary for dimerization is highly conserved in the enzymes from the two organisms examined.
将来自大肠杆菌的纯化硼氢化物还原的色氨酸合酶β2蛋白(EC 4.2.1.20)与来自粘质沙雷氏菌的纯化天然β2蛋白混合,并在尿素中解离。去除尿素导致还原型和天然β单体随机重新结合,形成种间杂合β2分子。还形成了相互组成的种间杂合β2蛋白分子。种间杂合重组分子的形成效率与种内重组分子(来自同一物种的还原型和天然单体)大致相同,表明在重新组装方面没有特别偏好。这些数据提供了证据,表明在所研究的两种生物体的酶中,二聚化所需的β单体之间的相互作用结构区域高度保守。