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针对 Akt 的策略:使用 3-取代 5-苯胺基苯并[c]异噁唑喹酮杀死癌细胞:初步研究。

Targeting Akt as strategy to kill cancer cells using 3-substituted 5-anilinobenzo[c]isoxazolequinones: A preliminary study.

机构信息

Facultad de Ciencias de la Salud, Universidad Arturo Prat, Casilla 121, Iquique, Chile; Instituto de Ciencias Exactas y Naturales, Universidad Arturo Prat, Casilla 121, Iquique, Chile.

Facultad de Ciencias de la Salud, Universidad Arturo Prat, Casilla 121, Iquique, Chile; Instituto de Ciencias Exactas y Naturales, Universidad Arturo Prat, Casilla 121, Iquique, Chile.

出版信息

Biomed Pharmacother. 2018 Jan;97:778-783. doi: 10.1016/j.biopha.2017.10.108. Epub 2017 Nov 6.

Abstract

Several new 3-substituted 5-anilinobenzo[c]isoxazolequinones were synthesized from 1,4-benzoquinone and alkyl- or arylcarbaldehydes by a three-step synthetic sequence. The new compounds (3a-h) were tested in vitro in normal human fibroblasts and two cancer cell lines for their cytotoxic activity. The range of IC values obtained for the compounds was from 3.4 to 74.2μM. Five members of the series (3b, 3d, 3e, 3f, 3g) were further selected and evaluated as inhibitors of the Hsp90 chaperoning function taking Akt as example of Hsp90 client proteins. We also evaluated the changes of intracellular levels of GSH and ATP as markers of cellular metabolic status in response to these compounds in T24 cells. One of such isoxazolquinones (3b) decreased the expression of Akt, PARP and Hsp90. Compounds 3b and 3d decreased the amount of ATP but caused no effect on GSH levels. These compounds also activated caspase-3 but an apoptosis-like type of cell death was unlike since PARP protein was not cleaved and caspase activation was substantially lower than its activation induced by staurosporine, a known caspase-3 activator in T24 cells. Taken together, preliminary results led to the discovery of an original lead compound (3b) which can be used as model to obtain new Akt inhibitors.

摘要

几种新的 3-取代 5-苯胺基苯并[c]异噁唑喹酮通过三步合成序列由 1,4-苯醌和烷基或芳基甲醛合成。新化合物(3a-h)在体外正常人类成纤维细胞和两种癌细胞系中测试其细胞毒性活性。获得的化合物的 IC 值范围为 3.4 至 74.2μM。该系列的五个成员(3b、3d、3e、3f、3g)进一步被选择并作为 Hsp90 伴侣功能的抑制剂进行评估,以 Akt 为例作为 Hsp90 客户蛋白。我们还评估了这些化合物在 T24 细胞中作为细胞代谢状态标志物的细胞内 GSH 和 ATP 水平的变化。其中一种异噁唑喹酮(3b)降低了 Akt、PARP 和 Hsp90 的表达。化合物 3b 和 3d 降低了 ATP 的含量,但对 GSH 水平没有影响。这些化合物还激活了 caspase-3,但不像细胞凋亡样的细胞死亡,因为 PARP 蛋白没有被切割,并且 caspase 激活明显低于其在 T24 细胞中由已知的 caspase-3 激活剂 staurosporine 诱导的激活。总之,初步结果导致发现了一种原始的先导化合物(3b),可作为获得新的 Akt 抑制剂的模型。

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