Kuriyama Isoko, Asano Naoki, Kato Ikuo, Oshige Masahiko, Sugino Akio, Kadota Yasuhiro, Kuchitsu Kazuyuki, Yoshida Hiromi, Sakaguchi Kengo, Mizushina Yoshiyuki
Laboratory of Food & Nutritional Sciences, Department of Nutritional Science, Kobe-Gakuin University, Nishi-ku, Kobe, Hyogo 651-2180, Japan.
Bioorg Med Chem. 2004 Mar 1;12(5):957-62. doi: 10.1016/j.bmc.2003.12.030.
We found a novel inhibitor specific to eukaryotic DNA polymerase epsilon(pol epsilon) from plant cultured cells, Nicotina tabacum L. The compound (compound 1) was a dipeptide alcohol, L-homoserylaminoethanol. The 50% inhibition of pol epsilon activity by the compound was 43.6 microg/mL, and it had almost no effect on the activities of the other eukaryotic DNA polymerases such as alpha, beta, gamma and delta, prokaryotic DNA polymerases, nor DNA metabolic enzymes such as human telomerase, human immunodeficiency virus type 1 reverse transcriptase, T7 RNA polymerase, human DNA topoisomerase I and II, T4 polynucleotide kinase and bovine deoxyribonuclease I. Kinetic studies showed that inhibition of pol epsilon by the compound was non-competitive with respect to both template-primer DNA and nucleotide substrate. We succeeded in chemically synthesizing the stereoisomers, L-homoserylaminoethanol and D-homoserylaminoethanol, and found both were effective to the same extent. The IC(50) values of L- and D-homoserylaminoethanols for pol epsilon were 42.0 and 41.5 microg/mL, respectively. This represents the second discovery of a pol epsilon-specific inhibitor, and the first report on a water-soluble peptide-like compound as the inhibitor, which is required in biochemical studies of pol epsilon.
我们从烟草(Nicotina tabacum L.)植物培养细胞中发现了一种新型的真核生物DNA聚合酶ε(pol ε)特异性抑制剂。该化合物(化合物1)是一种二肽醇,L-高丝氨醇胺乙醇。该化合物对pol ε活性的50%抑制浓度为43.6μg/mL,并且对其他真核生物DNA聚合酶如α、β、γ和δ、原核生物DNA聚合酶以及DNA代谢酶如人端粒酶、人类免疫缺陷病毒1型逆转录酶、T7 RNA聚合酶、人DNA拓扑异构酶I和II、T4多核苷酸激酶以及牛脱氧核糖核酸酶I的活性几乎没有影响。动力学研究表明,该化合物对pol ε的抑制作用对于模板-引物DNA和核苷酸底物均为非竞争性抑制。我们成功地化学合成了立体异构体L-高丝氨醇胺乙醇和D-高丝氨醇胺乙醇,并发现两者的抑制效果相同。L-和D-高丝氨醇胺乙醇对pol ε的IC50值分别为42.0和41.5μg/mL。这是pol ε特异性抑制剂的第二次发现,也是关于一种水溶性肽样化合物作为抑制剂的首次报道,这在pol ε的生化研究中是必需的。