Maki S, Kornberg A
Department of Biochemistry, Stanford University School of Medicine, California 94305.
J Biol Chem. 1988 May 15;263(14):6555-60.
Processive DNA synthesis, a property of DNA polymerase III holoenzyme of Escherichia coli, was not achieved by combining the pol III core (alpha, epsilon, and theta subunits) and the beta and gamma subunits. An activity that restored processivity to these subunits was found in crude extracts and was overproduced 4-fold in cells with plasmids amplifying the tau and gamma subunits. Purified to homogeneity, the activity, assayed by reconstitution of processivity, was represented by five polypeptides which were copurified. Judged by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, these correspond to the known subunits gamma (52 kDa) and delta (35 kDa) and to three new polypeptides: delta' (33 kDa), chi (15 kDa), and psi (12 kDa). The five polypeptides form a tight complex with a native molecular weight of about 200 kDa and a subunit stoichiometry of two gamma subunits to one each of the others. Processive DNA synthesis, now achieved with only three components (pol III core, beta, and the auxiliary complex), provides the opportunity to assess the functions of each and the contribution that the remaining auxiliary tau subunit makes to reconstitute a holoenzyme.
进行性DNA合成是大肠杆菌DNA聚合酶III全酶的一种特性,将pol III核心(α、ε和θ亚基)与β和γ亚基组合并不能实现这一特性。在粗提物中发现了一种能恢复这些亚基进行性的活性,并且在携带扩增tau和γ亚基的质粒的细胞中,该活性过量产生了4倍。通过进行性的重组测定,纯化至同质的该活性由共纯化的五种多肽代表。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳判断,这些多肽对应于已知的γ(52 kDa)和δ(35 kDa)亚基以及三种新的多肽:δ'(33 kDa)、χ(15 kDa)和ψ(12 kDa)。这五种多肽形成一个紧密的复合物,其天然分子量约为200 kDa,亚基化学计量比为两个γ亚基与其他亚基各一个。现在仅用三种成分(pol III核心、β和辅助复合物)就能实现进行性DNA合成,这为评估每种成分的功能以及剩余辅助tau亚基对重组全酶的贡献提供了机会。