Alnajjar Khadijeh S, Garcia-Barboza Beatriz, Negahbani Amirsoheil, Nakhjiri Maryam, Kashemirov Boris, McKenna Charles, Goodman Myron F, Sweasy Joann B
Department of Therapeutic Radiology and Department of Genetics, Yale University School of Medicine , New Haven, Connecticut 06520, United States.
Department of Chemistry, University of Southern California , Los Angeles, California 90089, United States.
Biochemistry. 2017 Apr 18;56(15):2096-2105. doi: 10.1021/acs.biochem.6b01230. Epub 2017 Apr 6.
K289M is a variant of DNA polymerase β (pol β) that has previously been identified in colorectal cancer. The expression of this variant leads to a 16-fold increase in mutation frequency at a specific site in vivo and a reduction in fidelity in vitro in a sequence context-specific manner. Previous work shows that this reduction in fidelity results from a decreased level of discrimination against incorrect nucleotide incorporation at the level of polymerization. To probe the transition state of the K289M mutator variant of pol β, single-turnover kinetic experiments were performed using β,γ-CXY dGTP analogues with a wide range of leaving group monoacid dissociation constants (pK), including a corresponding set of novel β,γ-CXY dCTP analogues. Surprisingly, we found that the values of the log of the catalytic rate constant (k) for correct insertion by K289M, in contrast to those of wild-type pol β, do not decrease with increased leaving group pK for analogues with pK values of <11. This suggests that one of the relative rate constants differs for the K289M reaction in comparison to that of the wild type (WT). However, a plot of log(k) values for incorrect insertion by K289M versus pK reveals a linear correlation with a negative slope, in this respect resembling k values for misincorporation by the WT enzyme. We also show that some of these analogues improve the fidelity of K289M. Taken together, our data show that Lys289 critically influences the catalytic pathway of pol β.
K289M是DNA聚合酶β(polβ)的一种变体,此前已在结直肠癌中被鉴定出来。这种变体的表达导致体内特定位点的突变频率增加16倍,并在体外以序列上下文特异性的方式降低保真度。先前的研究表明,保真度的降低是由于在聚合水平上对错误核苷酸掺入的辨别能力下降所致。为了探究polβ的K289M突变变体的过渡态,我们使用了具有广泛离去基团单酸解离常数(pK)的β,γ-CXY dGTP类似物进行单周转动力学实验,包括一组相应的新型β,γ-CXY dCTP类似物。令人惊讶的是,我们发现,与野生型polβ相比,K289M正确插入的催化速率常数(k)的对数值,对于pK值<11的类似物,不会随着离去基团pK的增加而降低。这表明,与野生型(WT)反应相比,K289M反应的相对速率常数之一有所不同。然而,K289M错误插入的log(k)值与pK的关系图显示出具有负斜率的线性相关性,在这方面类似于野生型酶错掺入的k值。我们还表明,其中一些类似物提高了K289M的保真度。综上所述,我们的数据表明,赖氨酸289对polβ的催化途径有至关重要的影响。