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首页> 外文期刊>Molecular cancer therapeutics >Isolation of a novel thioflavin s-derived compound that inhibits BAG-1-mediated protein interactions and targets BRAF inhibitor-resistant cell lines
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Isolation of a novel thioflavin s-derived compound that inhibits BAG-1-mediated protein interactions and targets BRAF inhibitor-resistant cell lines

机译:抑制硫代黄素S的新型化合物的分离,该化合物抑制BAG-1介导的蛋白质相互作用并靶向抗BRAF抑制剂的细胞系

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摘要

Protein-protein interactions mediated through the C-terminal Bcl-2-associated athanogene (BAG) domain of BAG-1 are critical for cell survival and proliferation. Thioflavin S (NSC71948)-a mixture of compounds resulting from the methylation and sulfonation of primulin base-has been shown to dosedependently inhibit the interaction between BAG-1 and Hsc70 in vitro. In human breast cancer cell lines, with high BAG-1 expression levels, Thioflavin S reduces the binding of BAG-1 to Hsc70, Hsp70, or CRAF and decreases proliferation and viability. Here, we report the development of a protocol for the purification and isolation of biologically active constituents of Thioflavin S and the characterization of the novel compound Thio-2. Thio-2 blocked the growth of several transformed cell lines, but had much weaker effects on untransformed cells. Thio-2 also inhibited the proliferation of melanoma cell lines that had become resistant to treatment with PLX4032, an inhibitor of mutant BRAF. In transformed cells, Thio-2 interfered with intracellular signaling at the level of RAF, but had no effect on the activation of AKT. Thio-2 decreased binding of BAG-1 to Hsc70 and to a lesser extent BRAF in vitro and in vivo, suggesting a possible mechanism of action. Given that tumors frequently develop resistance to kinase inhibitors during treatment, Thio-2 and related compounds may offer promising alternative strategies to currently available therapies. Mol Cancer Ther; 12(11); 2400-14.
机译:通过BAG-1的C端Bcl-2关联的致癌基因(BAG)域介导的蛋白质相互作用对细胞存活和增殖至关重要。硫黄素S(NSC71948)是一种由樱草素碱的甲基化和磺化产生的化合物混合物,已显示出剂量依赖性地抑制BAG-1与Hsc70在体外的相互作用。在具有高BAG-1表达水平的人乳腺癌细胞系中,硫黄素S降低BAG-1与Hsc70,Hsp70或CRAF的结合,并降低增殖和生存能力。在这里,我们报道了硫黄素S的生物活性成分的纯化和分离以及新型化合物Thio-2的表征的协议的发展。 Thio-2阻止了几种转化细胞系的生长,但对未转化细胞的作用却弱得多。 Thio-2还抑制了黑色素瘤细胞系的增殖,这些细胞系已对PLX4032(突变型BRAF抑制剂)的治疗产生了抗性。在转化的细胞中,Thio-2在RAF水平上干扰细胞内信号传导,但对AKT的激活没有影响。 Thio-2在体外和体内均可降低BAG-1与Hsc70和BRAF的结合程度,提示其可能的作用机理。鉴于肿瘤在治疗过程中经常对激酶抑制剂产生耐药性,因此Thio-2和相关化合物可能会为当前可用的治疗方法提供有希望的替代策略。分子癌疗法; 12(11); 2400-14。

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