Horie Sho, Okuda Chiaki, Yamashita Takatoshi, Watanabe Kenichi, Sato Yoshihiro, Yamaguchi Yasuhiro, Takeuchi Toshifumi, Sugawara Fumio, Yoshida Hiromi, Mizushina Yoshiyuki
Department of Nutritional Science, Kobe-Gakuin University, Kobe, Hyogo, Japan.
J Oleo Sci. 2010;59(11):621-30. doi: 10.5650/jos.59.621.
In the screening of selective DNA polymerase (pol) inhibitors, we isolated an acylated steryl glycoside, β-sitosteryl (6'-O-linoleoyl)-glucoside (compound 1), from the waste extract of soybean (Glycine max L.) oil. This compound exhibited a marked ability to inhibit the activities of eukaryotic Y-family pols (pols η, ι and κ), which are repair-related pols. Among mammalian Y-family pols, the activity of mouse pol κ was most strongly inhibited by compound 1, with an IC(50) value of 10.2 µM. On the other hand, compound 1 had no effect on the activities of other eukaryotic pols such as A-family (pol γ), B-family (pols α, δ, and ε), or X-family (pols β, λ and terminal deoxynucleotidyl transferase) pols. In addition, compound 1 had no effect on prokaryotic pols or other DNA metabolic enzymes such as calf primase of pol α, T7 RNA polymerase, T4 polynucleotide kinase, or bovine deoxyribonuclease I. Compound 1 consists of 3 groups: β-sitosteryl (compound 2), linoleic acid (compound 3), and D-glucose (compound 4). Compound 3 inhibited the activities of all mammalian pols tested, but compounds 2 and 4 did not have any effect on the tested pols. Kinetic studies showed that the inhibition of pol κ activity by compound 1 was noncompetitive with both the DNA template-primer and nucleotide substrate, whereas compound 3-induced inhibition was competitive with the DNA template-primer and noncompetitive with the nucleotide substrate. The relationship between the structure of compound 1 and the selective inhibition of eukaryotic Y-family pols is discussed.
在筛选选择性DNA聚合酶(pol)抑制剂的过程中,我们从大豆(Glycine max L.)油的废渣提取物中分离出一种酰化甾醇糖苷,β-谷甾醇(6'-O-亚油酰基)-葡萄糖苷(化合物1)。该化合物对与修复相关的真核Y家族pol(pol η、ι和κ)的活性表现出显著的抑制能力。在哺乳动物Y家族pol中,化合物1对小鼠pol κ的活性抑制作用最强,IC(50)值为10.2 μM。另一方面,化合物1对其他真核pol的活性没有影响,如A家族(pol γ)、B家族(pol α、δ和ε)或X家族(pol β、λ和末端脱氧核苷酸转移酶)的pol。此外,化合物1对原核pol或其他DNA代谢酶,如pol α的小牛引物酶、T7 RNA聚合酶、T4多核苷酸激酶或牛脱氧核糖核酸酶I也没有影响。化合物1由3部分组成:β-谷甾醇(化合物2)、亚油酸(化合物3)和D-葡萄糖(化合物4)。化合物3抑制了所有测试的哺乳动物pol的活性,但化合物2和4对测试的pol没有任何影响。动力学研究表明,化合物1对pol κ活性的抑制作用对DNA模板引物和核苷酸底物均为非竞争性,而化合物3诱导的抑制作用对DNA模板引物为竞争性,对核苷酸底物为非竞争性。本文讨论了化合物1的结构与真核Y家族pol的选择性抑制之间的关系。