Pérez-Arnaiz Patricia, Lázaro José M, Salas Margarita, de Vega Miguel
Instituto de Biología Molecular Eladio Viñuela (CSIC), Centro de Biología Molecular Severo Ochoa (CSIC-UAM), Universidad Autónoma Canto Blanco, 28049 Madrid, Spain.
Nucleic Acids Res. 2006 Jun 6;34(10):3107-15. doi: 10.1093/nar/gkl402. Print 2006.
Phi29 DNA polymerase achieves a functional coupling between its 3'-5' exonuclease and polymerization activities by means of important contacts with the DNA at both active sites. The placement and orientation of residues Lys538, Lys555, Lys557, Gln560, Thr571, Thr573 and Lys575 in a modelled phi29 DNA polymerase-DNA complex suggest a DNA-binding role. In addition, crystal structure of phi29 DNA polymerase-oligo (dT)5 complex showed Leu567, placed at the tip of the thumb subdomain, lying between the two 3'-terminal bases at the exonuclease site. Single replacement of these phi29 DNA polymerase residues by alanine was made, and mutant derivatives were overproduced and purified to homogeneity. The results obtained in the assay of their synthetic and degradative activities, as well as their coordination, allow us to propose: (1) a primer-terminus stabilization role at the polymerase active site for residues Lys538, Thr573 and Lys575, (2) a primer-terminus stabilization role at the exonuclease active site for residues Leu567 and Lys555 and (3) a primer-terminus binding role in both editing and polymerization modes for residue Gln560. The results presented here lead us to propose phi29 DNA polymerase thumb as the main subdomain responsible for the coordination of polymerization and exonuclease activities.
Phi29 DNA聚合酶通过在两个活性位点与DNA的重要接触,实现了其3'-5'核酸外切酶和聚合活性之间的功能偶联。在模拟的phi29 DNA聚合酶-DNA复合物中,赖氨酸538、赖氨酸555、赖氨酸557、谷氨酰胺560、苏氨酸571、苏氨酸573和赖氨酸575残基的位置和取向表明它们具有DNA结合作用。此外,phi29 DNA聚合酶-寡聚(dT)5复合物的晶体结构显示,位于拇指亚结构域末端的亮氨酸567位于核酸外切酶位点的两个3'-末端碱基之间。对phi29 DNA聚合酶的这些残基进行了丙氨酸单取代,并过量表达和纯化了突变衍生物使其达到均一性。通过对它们的合成和降解活性及其协调性的检测所获得的结果,使我们能够提出:(1)赖氨酸538、苏氨酸573和赖氨酸575残基在聚合酶活性位点具有引物末端稳定作用;(2)亮氨酸567和赖氨酸555残基在核酸外切酶活性位点具有引物末端稳定作用;(3)谷氨酰胺560残基在编辑和聚合模式中均具有引物末端结合作用。本文给出的结果使我们提出,phi29 DNA聚合酶的拇指亚结构域是负责聚合和核酸外切酶活性协调的主要亚结构域。