Brenowitz S, Kwack S, Goodman M F, O'Donnell M, Echols H
Division of Biochemistry and Molecular Biology, University of California, Berkeley 94720.
J Biol Chem. 1991 Apr 25;266(12):7888-92.
Exonucleolytic editing is a major contributor to the fidelity of DNA replication by the multisubunit DNA polymerase (pol) III holoenzyme. To investigate the source of editing specificity, we have studied the isolated exonuclease subunit, epsilon, and the pol III core subassembly, which carries the epsilon, theta, and alpha (polymerase) subunits. Using oligonucleotides with specific terminal mismatches, we have found that both epsilon and pol III core preferentially excise a mispaired 3' terminus and therefore have intrinsic editing specificity. For both epsilon and pol III core, exonuclease activity is much more effective with single-strand DNA; with a double-strand DNA, the exonuclease is strongly temperature-dependent. We conclude that the epsilon subunit of pol III holoenzyme is itself a specific editing exonuclease and that the source of specificity is the greater melting capacity of a mispaired 3' terminus.
核酸外切编辑是多亚基DNA聚合酶(pol)III全酶确保DNA复制保真度的主要因素。为了研究编辑特异性的来源,我们研究了分离出的核酸外切酶亚基ε以及携带ε、θ和α(聚合酶)亚基的pol III核心亚组件。使用具有特定末端错配的寡核苷酸,我们发现ε和pol III核心都优先切除错配的3'末端,因此具有内在的编辑特异性。对于ε和pol III核心来说,核酸外切酶活性对单链DNA的作用更有效;对于双链DNA,核酸外切酶强烈依赖温度。我们得出结论,pol III全酶的ε亚基本身就是一种特异性编辑核酸外切酶,特异性的来源是错配3'末端更大的解链能力。