Niimi Atsuko, Limsirichaikul Siripan, Yoshida Shonen, Iwai Shigenori, Masutani Chikahide, Hanaoka Fumio, Kool Eric T, Nishiyama Yukihiro, Suzuki Motoshi
Division of Molecular Carcinogenesis, Center for Neural Disease and Cancer, Nagoya University Graduate School of Medicine, Nagoya 466-8550, Japan.
Mol Cell Biol. 2004 Apr;24(7):2734-46. doi: 10.1128/MCB.24.7.2734-2746.2004.
We isolated active mutants in Saccharomyces cerevisiae DNA polymerase alpha that were associated with a defect in error discrimination. Among them, L868F DNA polymerase alpha has a spontaneous error frequency of 3 in 100 nucleotides and 570-fold lower replication fidelity than wild-type (WT) polymerase alpha. In vivo, mutant DNA polymerases confer a mutator phenotype and are synergistic with msh2 or msh6, suggesting that DNA polymerase alpha-dependent replication errors are recognized and repaired by mismatch repair. In vitro, L868F DNA polymerase alpha catalyzes efficient bypass of a cis-syn cyclobutane pyrimidine dimer, extending the 3' T 26000-fold more efficiently than the WT. Phe34 is equivalent to residue Leu868 in translesion DNA polymerase eta, and the F34L mutant of S. cerevisiae DNA polymerase eta has reduced translesion DNA synthesis activity in vitro. These data suggest that high-fidelity DNA synthesis by DNA polymerase alpha is required for genomic stability in yeast. The data also suggest that the phenylalanine and leucine residues in translesion and replicative DNA polymerases, respectively, might have played a role in the functional evolution of these enzyme classes.
我们在酿酒酵母DNA聚合酶α中分离出了与错误识别缺陷相关的活性突变体。其中,L868F DNA聚合酶α的自发错误频率为每100个核苷酸中有3个错误,复制保真度比野生型(WT)聚合酶α低570倍。在体内,突变型DNA聚合酶赋予突变体表型,并与msh2或msh6协同作用,这表明DNA聚合酶α依赖性复制错误可被错配修复识别并修复。在体外,L868F DNA聚合酶α能高效催化顺式-顺环丁烷嘧啶二聚体的跨损伤合成,其延伸3'端T的效率比野生型高26000倍。苯丙氨酸34相当于跨损伤DNA聚合酶η中的亮氨酸868残基,酿酒酵母DNA聚合酶η的F34L突变体在体外的跨损伤DNA合成活性降低。这些数据表明,DNA聚合酶α进行的高保真DNA合成是酵母基因组稳定性所必需的。数据还表明,跨损伤和复制性DNA聚合酶中的苯丙氨酸和亮氨酸残基可能在这些酶类的功能进化中发挥了作用。