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Structure-Activity Study of Bioisosteric Trifluoromethyl and Pentafluorosulfanyl Indole Inhibitors of the AAA ATPase p97

机译:AAA ATPase p97的生物立体三氟甲基和五氟硫烷基吲哚抑制剂的结构活性研究

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Exploratory SAR studies of a new phenyl indole chemotype for p97 inhibition revealed C-5 indole substituent effects in the ADPGlo assay that did not fully correlate with either electronic or steric factors. A focused series of methoxy-, trifluoromethoxy-, methyl-, trifluoromethyl, pentafluorosulfanyl-, and nitro-analogues was found to exhibit IC(50)s from low nanomolar to double-digit micromolar. Surprisingly, we found that the trifluoromethoxy-analogue was biochemically a better match of the trifluoromethyl-substituted lead structure than a pentafluorosulfanyl-analogue. Moreover, in spite of their almost equivalent strongly electron-depleting effect on the indole core, pentafluorosulfanyl- and nitro-derivatives were found to exhibit a 430-fold difference in p97 inhibitory activities. Conversely, the electronically divergent C-5 methyl- and nitro-analogues both showed low nanomolar activities.
机译:对新的苯吲哚化学型进行p97抑制的探索性SAR研究显示,ADPGlo分析中的C-5吲哚取代基效应与电子或空间因素均不完全相关。发现了一系列聚焦的甲氧基,三氟甲氧基,甲基,三氟甲基,五氟硫烷基和硝基类似物,其IC(50)从低纳摩尔到两位数微摩尔。令人惊讶地,我们发现三氟甲氧基类似物在生物化学上比三氟甲硫基类似物更好地匹配了三氟甲基取代的铅结构。而且,尽管它们对吲哚核几乎具有相当强的电子耗竭作用,但是发现五氟硫烷基和硝基衍生物在p97抑制活性上表现出430倍的差异。相反,电子发散的C-5甲基和硝基类似物均显示出较低的纳摩尔活性。

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