Hanashima S, Mizushina Y, Ohta K, Yamazaki T, Sugawara F, Sakaguchi K
Department of Applied Biological Science, Faculty of Science and Technology, Science University of Tokyo, Noda, Chiba 278-8510, Japan.
Jpn J Cancer Res. 2000 Oct;91(10):1073-83. doi: 10.1111/j.1349-7006.2000.tb00887.x.
We reported previously that sulfolipids in the sulfoquinovosylacylglycerol class from a fern and an alga are potent inhibitors of DNA polymerase alpha and beta and potent anti-neoplastic agents. In developing a procedure for chemical synthesis of sulfolipids, we synthesized many derivatives and stereoisomers of sulfoquinovosylmonoacylglycerol (SQMG) / sulfoquinovosyldiacylglycerol (SQDG). Some of these molecules were stronger inhibitors than the SQMG / SQDG originally reported as natural compounds. In this study, we examined the structure-inhibitory function relationship of synthetic SQMG / SQDG and its relationship to cytotoxic activity. The inhibitory effect is probably mainly dependent on the fatty acid effect, which we reported previously, although each of the SQMG / SQDG was a much stronger inhibitor than the fatty acid alone that was present in the SQMG / SQDG. The inhibitory effect could be influenced by the chain size of fatty acids in the SQMG / SQDG. The sulfate moiety in the quinovose was also important for the inhibition. Lineweaver-Burk plots of SQMG / SQDG indicated that DNA polymerase alpha was non-competitively inhibited, but the SQMG / SQDG were effective as antagonists of both template-primer DNA-binding and nucleotide substrate-binding of DNA polymerase beta. The SQMG had an cytotoxic effect, but the SQDG tested did not. The SQDG might not be able to penetrate into cells. Based on these results, we discuss the molecular action of SQMG / SQDG and propose drug design strategies for developing new anti-neoplastic agents.
我们之前报道过,来自一种蕨类植物和一种藻类的磺基异鼠李糖基酰基甘油类中的硫脂是DNA聚合酶α和β的有效抑制剂以及有效的抗肿瘤剂。在开发硫脂化学合成方法的过程中,我们合成了许多磺基异鼠李糖基单酰基甘油(SQMG)/磺基异鼠李糖基二酰基甘油(SQDG)的衍生物和立体异构体。其中一些分子比最初报道为天然化合物的SQMG / SQDG是更强的抑制剂。在本研究中,我们研究了合成的SQMG / SQDG的结构-抑制功能关系及其与细胞毒性活性的关系。抑制作用可能主要取决于我们之前报道的脂肪酸效应,尽管每个SQMG / SQDG都是比SQMG / SQDG中单独存在的脂肪酸更强的抑制剂。抑制作用可能受SQMG / SQDG中脂肪酸链大小的影响。奎诺糖中的硫酸部分对抑制也很重要。SQMG / SQDG的Lineweaver-Burk图表明DNA聚合酶α受到非竞争性抑制,但SQMG / SQDG作为DNA聚合酶β的模板-引物DNA结合和核苷酸底物结合的拮抗剂是有效的。SQMG具有细胞毒性作用,但测试的SQDG没有。SQDG可能无法穿透细胞。基于这些结果,我们讨论了SQMG / SQDG的分子作用,并提出了开发新的抗肿瘤剂的药物设计策略。