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α-Methylation enhances the potency of isoprenoid triazole bisphosphonates as geranylgeranyl diphosphate synthase inhibitors

机译:α-甲基化增强了异戊二烯三唑双膦酸酯作为甲苯基甲基二磷酸二磷酸合酶抑制剂的效力

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Graphical abstract Display Omitted Abstract Disruption of protein geranylgeranylation via inhibition of geranylgeranyl diphosphate synthase (GGDPS) represents a novel therapeutic strategy for a variety of malignancies, especially those characterized by excessive protein secretion such as multiple myeloma. Our work has demonstrated that some isoprenoid triazole bisphosphonates are potent and selective inhibitors of GGDPS. Here we present the synthesis and biological evaluation of a new series of isoprenoid triazoles modified by incorporation of a methyl group at the α-carbon. These studies reveal that incorporation of an α-methyl substituent enhances the potency of these compounds as GGDPS inhibitors, and, in the case of the homogeranyl/homoneryl series, abrogates the effects of olefin stereochemistry on inhibitory activity. The incorporation of the methyl group allowed preparation of a POM-prodrug, which displayed a 10-fold increase in cellular activity compared to the corresponding salt. These studies form the basis for future preclinical studies investigating the anti-myeloma activity of these novel α-methyl triazole bisphosphonates.
机译:图形摘要显示省略了通过抑制天竺葵二磷酸二磷酸二磷酸二磷酸合酶(GGDPS)的蛋白质甘油烷基化的摘要摘要破坏蛋白质天竺葵烷基化(GGDP)代表了各种恶性肿瘤的新疗法策略,尤其是那些具有多种骨髓瘤的过量蛋白质分泌的那些。我们的工作表明,一些异戊二烯三唑双膦酸盐是GGDP的有效和选择性抑制剂。在这里,我们通过在α-碳的甲基掺入甲基,介绍了一种新的一系列异戊二烯三唑的合成和生物学评价。这些研究表明,α-甲基取代基的掺入增强了这些化合物作为GGDPS抑制剂的效力,并且在同源甲基/同性恋系列的情况下,废除了烯烃立体化学对抑制活性的影响。掺入甲基允许制备POM-前药,其与相应的盐相比显示了细胞活性的10倍。这些研究形成了未来临床前研究的基础,研究这些新型α-甲基三唑双膦酸盐的抗骨髓瘤活性。

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