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Phenolic indeno12-bindoles as ABCG2-selective potent and non-toxic inhibitors stimulating basal ATPase activity

机译:酚吲哚12-b吲哚为ABCG2选择性强效无毒抑制剂可刺激基础ATPase活性

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摘要

Ketonic indeno[1,2-b]indole-9,10-dione derivatives, initially designed as human casein kinase II (CK2) inhibitors, were recently shown to be converted into efficient inhibitors of drug efflux by the breast cancer resistance protein ABCG2 upon suited substitutions including a N5-phenethyl on C-ring and hydrophobic groups on D-ring. A series of ten phenolic and seven p-quinonic derivatives were synthesized and screened for inhibition of both CK2 and ABCG2 activities. The best phenolic inhibitors were about threefold more potent against ABCG2 than the corresponding ketonic derivatives, and showed low cytotoxicity. They were selective for ABCG2 over both P-glycoprotein and MRP1 (multidrug resistance protein 1), whereas the ketonic derivatives also interacted with MRP1, and they additionally displayed a lower interaction with CK2. Quite interestingly, they strongly stimulated ABCG2 ATPase activity, in contrast to ketonic derivatives, suggesting distinct binding sites. In contrast, the p-quinonic indenoindoles were cytotoxic and poor ABCG2 inhibitors, whereas a partial inhibition recovery could be reached upon hydrophobic substitutions on D-ring, similarly to the ketonic derivatives.
机译:最初设计为人酪蛋白激酶II(CK2)抑制剂的酮酮茚并[1,2-b]吲哚-9,10-二酮衍生物最近被证明可通过抗乳腺癌蛋白ABCG2转化为有效的药物外流抑制剂。合适的取代,包括C环上的N 5 -苯乙基和D环上的疏水基。合成了一系列的十种酚醛衍生物和七种对喹啉衍生物,并筛选了对CK2和ABCG2活性的抑制作用。最好的酚类抑制剂对ABCG2的效力比相应的酮衍生物高约三倍,并且显示出低的细胞毒性。它们对ABCG2的选择性高于P-糖蛋白和MRP1(多药耐药性蛋白1),而酮衍生物也与MRP1相互作用,并且它们与CK2的相互作用较低。非常有趣的是,与酮衍生物不同,它们强烈刺激了ABCG2 ATPase的活性,暗示了独特的结合位点。相比之下,对苯二酚吲哚吲哚是具有细胞毒性和较差的ABCG2抑制剂,而与酮衍生物相似,在D环上进行疏水取代后可以实现部分抑制回收。

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