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TMS, a chemically modified herbal derivative of Resveratrol, induces cell death by targeting Bax

机译:TMS是白藜芦醇的化学修饰草药衍生物,可通过靶向Bax诱导细胞死亡

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Breast cancer recurrence after an initial favorable response to treatment is a major concern for patients who receive hormonal therapies. Additional therapies are necessary to extend the time of response, and ideally, these therapies should exhibit minimal toxicity. Our study described herein focuses on a non-toxic pro-apoptotic agent, TMS (2,4,3′,5′-tetramethoxystilbene), which belongs to the Resveratrol family of stilbenes. Prior study demonstrated that TMS was more effective than Resveratrol for inducing apoptosis. Additionally, TMS was effective for invoking death of relapsing breast cancer cells. As TMS was effective for reducing tumor burden, we sought to determine the mechanism by which it achieved its effects. Microarray analysis demonstrated that TMS treatment increased tubulin genes as well as stress response and pro-apoptotic genes. Fractionation studies uncovered that TMS treatment causes cleavage of Bax from the p21 form to a truncated p18 form which is associated with the induction of potent apoptosis. Co-localization analysis of immunofluorescent studies showed that Bax moved from the cytosol to the mitochondria. In addition, the pro-apoptotic proteins Noxa and Bim (EL, L, and S) were increased upon TMS treatment. Cell lines reduced for Bax, Bim, and Noxa are compromised for TMS-mediated cell death. Electron microscopy revealed evidence of nuclear condensation, formation of apoptotic bodies and DAPI staining showed evidence of DNA fragmentation. TMS treatment was able to induce both caspase-independent and caspase-dependent death via the intrinsic death pathway.
机译:对于接受激素疗法的患者而言,对治疗的最初良好反应后的乳腺癌复发是主要关注的问题。需要其他疗法以延长反应时间,并且理想地,这些疗法应表现出最小的毒性。本文描述的我们的研究集中于无毒促凋亡剂TMS(2,4,3',5'-四甲氧基)),属于芪草白藜芦醇家族。先前的研究表明,TMS在诱导凋亡方面比白藜芦醇更有效。另外,TMS对于引起复发性乳腺癌细胞的死亡有效。由于TMS可以有效减轻肿瘤负担,因此我们试图确定其发挥作用的机制。芯片分析表明,TMS处理增加了微管蛋白基因以及应激反应和促凋亡基因。分级研究发现,TMS处理可导致Bax从p21形式裂解为截短的p18形式,这与诱导有效的细胞凋亡有关。免疫荧光研究的共定位分析表明,Bax从胞质溶胶转移到线粒体。另外,TMS处理后促凋亡蛋白Noxa和Bim(EL,L和S)增加。 Bax,Bim和Noxa减少的细胞系因TMS介导的细胞死亡而受损。电子显微镜显示核浓缩,凋亡小体形成的证据,DAPI染色显示DNA断裂的证据。 TMS治疗能够通过内在的死亡途径诱导caspase依赖性和caspase依赖性死亡。

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