Lill U I, Hartmann G R
Hoppe Seylers Z Physiol Chem. 1977 Dec;358(12):1605-8. doi: 10.1515/bchm2.1977.358.2.1605.
Functionally equivalent subunits of RNA polymerase from Micrococcus luteus and Escherichia coli differ from each other in many molecular and antigenic properties. In spite of these differences, subunit alpha from E. coli and subunit beta from M. luteus form a complex alpha2beta, when incubated together. This complex binds rifampicin tightly, which the isolated subunits do not. The hybrid complex is very similar in its properties to the complex alpha2beta formed only from E. coli or M. luteus subunits. Since the sub-assembly alpha2beta from E. coli is reported to be an obligatory intermediate in the assembly process of complete RNA polymerase, the newly described hybrid sub-assembly may function similarly as an intermediate in the formation of the hybrid form of RNA polymerase described earlier.
藤黄微球菌和大肠杆菌的RNA聚合酶功能等效亚基在许多分子和抗原特性上彼此不同。尽管存在这些差异,但大肠杆菌的α亚基和藤黄微球菌的β亚基一起孵育时会形成α2β复合物。该复合物紧密结合利福平,而分离的亚基则不会。杂合复合物的性质与仅由大肠杆菌或藤黄微球菌亚基形成的α2β复合物非常相似。由于据报道大肠杆菌的α2β亚组件是完整RNA聚合酶组装过程中的必需中间体,因此新描述的杂合亚组件可能在早期描述的RNA聚合酶杂合形式的形成中作为中间体发挥类似的作用。