Kasai Nobuyuki, Mizushina Yoshiyuki, Murata Hiroshi, Yamazaki Takayuki, Ohkubo Tadayasu, Sakaguchi Kengo, Sugawara Fumio
Department of Applied Biological Science, Tokyo University of Science, Noda, Chiba, Japan.
FEBS J. 2005 Sep;272(17):4349-61. doi: 10.1111/j.1742-4658.2005.04848.x.
We have previously reported that sulfoquinovosylmonoacylglycerol (SQMG) is a potent inhibitor of mammalian DNA polymerases. DNA polymerase beta (pol beta) is one of the most important enzymes protecting the cell against DNA damage by base excision repair. In this study, we characterized the inhibitory action of SQMG against rat pol beta. SQMG competed with both the substrate and the template-primer for binding to pol beta. A gel mobility shift assay and a polymerase activity assay showed that SQMG competed with DNA for a binding site on the N-terminal 8-kDa domain of pol beta, subsequently inhibiting its catalytic activity. Fragments of SQMG such as sulfoquinovosylglycerol (SQG) and fatty acid (myristoleic acid, MA) weakly inhibited pol beta activity and the inhibitory effect of a mixture of SQG and MA was stronger than that of SQG or MA. To characterize this inhibition more precisely, we attempted to identify the interaction interface between SQMG and the 8-kDa domain by NMR chemical shift mapping. Firstly, we determined the binding site on a fragment of SQMG, the SQG moiety. We observed chemical shift changes primarily at two sites, the residues comprising the C-terminus of helix-1 and the N-terminus of helix-2, and residues in helix-4. Finally, based on our present results and our previously reported study of the interaction interface of fatty acids, we constructed two three-dimensional models of a complex between the 8-kDa domain and SQMG and evaluated them by the mutational analysis. The models show a SQMG interaction interface that is consistent with the data.
我们之前报道过,磺基喹喔啉单酰甘油(SQMG)是哺乳动物DNA聚合酶的一种有效抑制剂。DNA聚合酶β(polβ)是通过碱基切除修复保护细胞免受DNA损伤的最重要酶之一。在本研究中,我们对SQMG对大鼠polβ的抑制作用进行了表征。SQMG与底物和模板引物竞争结合polβ。凝胶迁移率变动分析和聚合酶活性分析表明,SQMG与DNA竞争polβ N端8 kDa结构域上的结合位点,随后抑制其催化活性。SQMG的片段如磺基喹喔啉甘油(SQG)和脂肪酸(肉豆蔻油酸,MA)对polβ活性的抑制作用较弱,且SQG和MA混合物的抑制作用强于SQG或MA。为了更精确地表征这种抑制作用,我们试图通过核磁共振化学位移映射来确定SQMG与8 kDa结构域之间的相互作用界面。首先,我们确定了SQMG片段即SQG部分上的结合位点。我们主要在两个位点观察到化学位移变化,即构成螺旋-1 C端和螺旋-2 N端的残基,以及螺旋-4中的残基。最后,基于我们目前的结果以及我们之前关于脂肪酸相互作用界面的报道研究,我们构建了8 kDa结构域与SQMG之间复合物的两个三维模型,并通过突变分析对其进行评估。这些模型显示的SQMG相互作用界面与数据一致。