Glick Eitan, Chau Janice S, Vigna Kellie L, McCulloch Scott D, Adman Elinor T, Kunkel Thomas A, Loeb Lawrence A
The Joseph Gottstein Memorial Cancer Research Laboratory, Department of Pathology, University of Washington, Seattle, Washington 98195-357705, USA.
J Biol Chem. 2003 May 23;278(21):19341-6. doi: 10.1074/jbc.M300686200. Epub 2003 Mar 18.
DNA polymerase eta (Pol eta) is a member of a new class of DNA polymerases that is able to copy DNA containing damaged nucleotides. These polymerases are highly error-prone during copying of unaltered DNA templates. We analyzed the relationship between bypass efficiency and fidelity of DNA synthesis by introducing substitutions for Tyr-52, a highly conserved amino acid, within the human DNA polymerase eta (hPol eta) finger domain. Most substitutions for Tyr-52 caused reduction in bypass of UV-associated damage, measured by the ability to rescue the viability of UV-sensitive yeast cells at a high UV dose. For most mutants, the reduction in bypass ability paralleled the reduction in polymerization activity. Interestingly, the hPol eta Y52E mutant exhibited a greater reduction in bypass efficiency than polymerization activity. The reduction in bypass efficiency was accompanied by an up to 11-fold increase in the incorporation of complementary nucleotides relative to non-complementary nucleotides. The fidelity of DNA synthesis, measured by copying a gapped M13 DNA template in vitro, was also enhanced as much as 15-fold; the enhancement resulted from a decrease in transitions, which were relatively frequent, and a large decrease in transversions. Our demonstration that an amino acid substitution within the active site enhances the fidelity of DNA synthesis by hPol eta, one of the most inaccurate of DNA polymerases, supports the hypothesis that even error-prone DNA polymerases function in base selection.
DNA聚合酶η(Pol η)是一类新型DNA聚合酶的成员,它能够复制含有受损核苷酸的DNA。这些聚合酶在复制未改变的DNA模板时极易出错。我们通过在人DNA聚合酶η(hPol η)指状结构域内对高度保守的氨基酸Tyr-52进行替换,分析了DNA合成的跨损伤效率与保真度之间的关系。通过在高紫外线剂量下挽救对紫外线敏感的酵母细胞活力的能力来衡量,Tyr-52的大多数替换导致紫外线相关损伤的跨损伤能力降低。对于大多数突变体,跨损伤能力的降低与聚合活性的降低平行。有趣的是,hPol η Y52E突变体的跨损伤效率降低幅度大于聚合活性降低幅度。跨损伤效率的降低伴随着相对于非互补核苷酸,互补核苷酸掺入量增加高达11倍。通过在体外复制有缺口的M13 DNA模板来衡量,DNA合成的保真度也提高了多达15倍;这种提高是由于相对频繁的转换减少以及颠换大幅减少所致。我们证明,在活性位点内的氨基酸替换增强了最不准确的DNA聚合酶之一hPol η的DNA合成保真度,这支持了即使是易出错的DNA聚合酶在碱基选择中也起作用的假设。