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从卡特里海绵(Phyllospongia)中分离得到的抗白血病Scalarane 倍半萜和 Meroditerpenoid 通过对拓扑异构酶 II 和 Hsp90 的双重抑制作用诱导细胞凋亡。

Antileukemic Scalarane Sesterterpenoids and Meroditerpenoid from Carteriospongia (Phyllospongia) sp., Induce Apoptosis via Dual Inhibitory Effects on Topoisomerase II and Hsp90.

机构信息

Graduate Institute of Marine Biology, National Dong Hwa University, Pingtung, 944, Taiwan.

National Museum of Marine Biology &Aquarium, Pingtung 944, Taiwan.

出版信息

Sci Rep. 2016 Oct 31;6:36170. doi: 10.1038/srep36170.

Abstract

Two new scalarane sesterterpenoids, 12β-(3'β-hydroxybutanoyloxy)-20,24-dimethyl-24-oxo-scalara-16-en-25-al (1) and 12β-(3'β-hydroxypentanoyloxy)-20,24-dimethyl-24-oxo-scalara-16-en-25-al (2), along with one known tetraprenyltoluquinol-related metabolite (3), were isolated from the sponge Carteriospongia sp. In leukemia Molt 4 cells, 1 at 0.0625 μg/mL (125 nM) triggered mitochondrial membrane potential (MMP) disruption and apoptosis showing more potent effect than 2 and 3. The isolates inhibited topoisomerase IIα expression. The apoptotic-inducing effect of 3 was supported by the in vivo experiment through suppressing the volume of xenograft tumor growth (47.58%) compared with the control. Compound 1 apoptotic mechanism of action in Molt 4 cells was further elucidated through inducing ROS generation, calcium release and ER stress. Using the molecular docking analysis, 1 exhibited more binding affinity to N-terminal ATP-binding pocket of Hsp90 protein than 17-AAG, a standard Hsp90 inhibitor. The expression of Hsp90 client proteins, Akt, p70, NFκB, Raf-1, p-GSK3β, and XIAP, MDM 2 and Rb2, and CDK4 and Cyclin D3, HIF 1 and HSF1 were suppressed by the use of 1. However, the expression of Hsp70, acetylated tubulin, and activated caspase 3 were induced after 1 treatment. Our results suggested that the proapoptotic effect of the isolates is mediated through the inhibition of Hsp90 and topoisomerase activities.

摘要

从海绵卡特里奥斯皮昂斯 sp. 中分离得到两个新的倍半萜类二萜化合物 12β-(3'β-羟基丁酰氧基)-20,24-二甲基-24-氧代-斯卡拉-16-烯-25-醇(1)和 12β-(3'β-羟基戊酰氧基)-20,24-二甲基-24-氧代-斯卡拉-16-烯-25-醇(2),以及一个已知的四异戊烯基甲苯醌相关代谢物(3)。在白血病 Molt 4 细胞中,化合物 1 在 0.0625 μg/mL(125 nM)时触发线粒体膜电位(MMP)破坏和凋亡,其效果比化合物 2 和 3 更强。这些分离物抑制拓扑异构酶 IIα 的表达。3 的诱导凋亡作用在体内实验中得到了支持,与对照组相比,其抑制异种移植肿瘤生长体积(47.58%)。通过诱导 ROS 产生、钙释放和 ER 应激,进一步阐明了 1 在 Molt 4 细胞中的凋亡作用机制。通过分子对接分析,1 与 Hsp90 蛋白 N 端 ATP 结合口袋的结合亲和力强于 Hsp90 标准抑制剂 17-AAG。Hsp90 客户蛋白 Akt、p70、NFκB、Raf-1、p-GSK3β、XIAP、MDM2 和 Rb2、CDK4 和 Cyclin D3、HIF1 和 HSF1 的表达被 1 抑制。然而,1 处理后 Hsp70、乙酰化微管蛋白和活化的 caspase 3 的表达被诱导。我们的结果表明,这些分离物的促凋亡作用是通过抑制 Hsp90 和拓扑异构酶活性介导的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d168/5086919/cbf4fb69866a/srep36170-f1.jpg

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