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细胞骨架介导的脂质筏中死亡受体和配体的聚集在癌症化疗中形成促凋亡簇。

Cytoskeleton-mediated death receptor and ligand concentration in lipid rafts forms apoptosis-promoting clusters in cancer chemotherapy.

作者信息

Gajate Consuelo, Mollinedo Faustino

机构信息

Centro de Investigación del Cáncer, Instituto de Biología Molecular y Celular del Cáncer, Consejo Superior de Investigaciones Científicas-Universidad de Salamanca, Campus Miguel de Unamuno, E-37007 Salamanca, Spain.

出版信息

J Biol Chem. 2005 Mar 25;280(12):11641-7. doi: 10.1074/jbc.M411781200. Epub 2005 Jan 19.

Abstract

While investigating the mechanism of action of the novel antitumor drug Aplidin, we have discovered a potent and novel cell-killing mechanism that involves the formation of Fas/CD95-driven scaffolds in membrane raft clusters housing death receptors and apoptosis-related molecules. Fas, tumor necrosis factor-receptor 1, and tumor necrosis factor-related apoptosis-inducing ligand receptor 2/death receptor 5 were clustered into lipid rafts in leukemic Jurkat cells following Aplidin treatment, the presence of Fas being essential for apoptosis. Preformed membrane-bound Fas ligand (FasL) as well as downstream signaling molecules, including Fas-associated death domain-containing protein, procaspase-8, procaspase-10, c-Jun amino-terminal kinase, and Bid, were also translocated into lipid rafts, connecting death receptor extrinsic and mitochondrial intrinsic apoptotic pathways. Blocking Fas/FasL interaction partially inhibited Aplidin-induced apoptosis. Aplidin was rapidly incorporated into membrane rafts, and drug uptake was inhibited by lipid raft disruption. Actin-linking proteins ezrin, moesin, RhoA, and RhoGDI were conveyed into Fas-enriched rafts in drug-treated leukemic cells. Disruption of lipid rafts and interference with actin cytoskeleton prevented Fas clustering and apoptosis. Thus, Aplidin-induced apoptosis involves Fas activation in both a FasL-independent way and, following Fas/FasL interaction, an autocrine way through the concentration of Fas, membrane-bound FasL, and signaling molecules in membrane rafts. These data indicate a major role of actin cytoskeleton in the formation of Fas caps and highlight the crucial role of the clusters of apoptotic signaling molecule-enriched rafts in apoptosis, acting as concentrators of death receptors and downstream signaling molecules and as the linchpin from which a potent death signal is launched.

摘要

在研究新型抗肿瘤药物 aplidin 的作用机制时,我们发现了一种强大且新颖的细胞杀伤机制,该机制涉及在容纳死亡受体和凋亡相关分子的膜筏簇中形成由 Fas/CD95 驱动的支架。在 aplidin 处理后,白血病 Jurkat 细胞中的 Fas、肿瘤坏死因子受体 1 和肿瘤坏死因子相关凋亡诱导配体受体 2/死亡受体 5 聚集到脂筏中,Fas 的存在对凋亡至关重要。预先形成的膜结合 Fas 配体(FasL)以及下游信号分子,包括含 Fas 相关死亡结构域的蛋白、procaspase-8、procaspase-10、c-Jun 氨基末端激酶和 Bid,也转位到脂筏中,连接死亡受体的外源性和线粒体的内源性凋亡途径。阻断 Fas/FasL 相互作用部分抑制了 aplidin 诱导的凋亡。Aplidin 迅速掺入膜筏中,脂筏破坏可抑制药物摄取。肌动蛋白连接蛋白埃兹蛋白、膜突蛋白、RhoA 和 RhoGDI 被转运到药物处理的白血病细胞中富含 Fas 的脂筏中。脂筏破坏和对肌动蛋白细胞骨架的干扰阻止了 Fas 聚集和凋亡。因此,apldin 诱导的凋亡涉及以 FasL 非依赖方式激活 Fas,以及在 Fas/FasL 相互作用后,通过脂筏中 Fas、膜结合 FasL 和信号分子的聚集以自分泌方式激活 Fas。这些数据表明肌动蛋白细胞骨架在 Fas 帽形成中起主要作用,并突出了富含凋亡信号分子的脂筏簇在凋亡中的关键作用,其作为死亡受体和下游信号分子的聚集器,并作为启动强大死亡信号的关键环节。

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