Taylor R M, Whitehouse J, Cappelli E, Frosina G, Caldecott K W
School of Biological Sciences, G.38 Stopford Building, University of Manchester, Oxford Road, Manchester M13 9PT, UK.
Nucleic Acids Res. 1998 Nov 1;26(21):4804-10. doi: 10.1093/nar/26.21.4804.
Mammalian DNA ligase III exists as two distinct isoforms denoted alpha and beta. Both forms possess a motif that is homologous to the putative zinc finger present in poly(ADP-ribose) polymerase. Here, the role of this motif in the binding and ligation of nicked DNA and RNA substrates in vitro has been examined in both isoforms. Disruption of the putative zinc finger did not affect DNA ligase III activity on nicked DNA duplex, nor did it abolish DNA ligase III-alpha activity during DNA base excision repair in a cell-free assay. In contrast, disruption of this motif reduced 3-fold the activity of both DNA ligase III isoforms on nicked RNA present in RNA/DNA homopolymers. Furthermore, whereas disruption of the motif did not prevent binding of DNA ligase III to nicked DNA duplex, binding to nicked RNA homopolymers was reduced approximately 10-fold. These results suggest that the putative zinc finger does not stimulate DNA ligase III activity on simple nicked DNA substrates, but indicate that this motif can target the binding and activity of DNA ligase III to nicked RNA homopolymer. The implications of these results to the cellular role of the putative zinc finger are discussed.
哺乳动物DNA连接酶III以两种不同的亚型存在,分别称为α和β。两种形式都具有一个基序,该基序与聚(ADP - 核糖)聚合酶中存在的假定锌指同源。在此,已在两种亚型中研究了该基序在体外对缺口DNA和RNA底物的结合及连接中的作用。假定锌指的破坏并不影响DNA连接酶III对缺口DNA双链体的活性,在无细胞测定中,它也没有消除DNA碱基切除修复过程中的DNA连接酶III - α活性。相比之下,该基序的破坏使DNA连接酶III两种亚型对RNA/DNA同聚物中缺口RNA的活性降低了3倍。此外,虽然该基序的破坏并不阻止DNA连接酶III与缺口DNA双链体的结合,但与缺口RNA同聚物的结合减少了约10倍。这些结果表明,假定锌指不会刺激DNA连接酶III对简单缺口DNA底物的活性,但表明该基序可使DNA连接酶III的结合和活性靶向缺口RNA同聚物。讨论了这些结果对假定锌指细胞作用的影响。