Tosaka A, Ogawa M, Yoshida S, Suzuki M
Laboratory of Cancer Cell Biology, Research Institute for Disease Mechanism and Control, Nagoya University School of Medicine, Nagoya, 466-8550, Japan.
J Biol Chem. 2001 Jul 20;276(29):27562-7. doi: 10.1074/jbc.M010635200. Epub 2001 May 9.
Previous studies indicate that the O-helix of Thermus aquaticus (Taq) DNA polymerase I (pol I) plays an important role in the replication fidelity of the enzyme. This study examines the role of Thr-664, which lies in the middle of the O-helix of Taq pol I. A mutant of Taq Pol I with a proline substitution of Thr-664 (T664P) exhibits much lower replication fidelity than the wild type enzyme in a forward mutation assay. T664P produces base substitution, single-base deletion, and single-base insertion errors at 20-, 5, and 50-fold higher rates than wild type, respectively. In specific activity and steady-state kinetic experiments, T664P was catalytically robust for insertion of correct nucleotides. In contrast, it incorporated incorrect nucleotides 6.1- to 10-fold more efficiently than wild type at a template dC. Mismatched primer termini were extended by T664P 4.2- to 9.5-fold more efficiently than wild type. These data imply that the O-helix with a proline at position 664 functions like wild type Taq pol I for correct nucleotide incorporations, but bends and enlarges the catalytic pocket of the enzyme and increases the rate of nucleotide misincorporation.
先前的研究表明,嗜热栖热菌(Taq)DNA聚合酶I(pol I)的O螺旋在该酶的复制保真度中起重要作用。本研究考察了位于Taq pol I的O螺旋中间的苏氨酸664(Thr-664)的作用。在正向突变试验中,苏氨酸664被脯氨酸取代的Taq Pol I突变体(T664P)的复制保真度比野生型酶低得多。T664P产生碱基替换、单碱基缺失和单碱基插入错误的速率分别比野生型高20倍、5倍和50倍。在比活性和稳态动力学实验中,T664P在插入正确核苷酸时具有较强的催化活性。相比之下,在模板dC处,它掺入错误核苷酸的效率比野生型高6.1至10倍。T664P延伸错配引物末端的效率比野生型高4.2至9.5倍。这些数据表明,664位带有脯氨酸的O螺旋在正确掺入核苷酸时的功能与野生型Taq pol I相同,但会使酶的催化口袋弯曲并扩大,从而增加核苷酸错掺入的速率。