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A novel small molecule inhibitor targeted at Bcl-2

机译:针对Bcl-2的新型小分子抑制剂

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Recently, the heterocyclic compound 8-oxo-3-thiomorpholino-8H-acenaphtho[1,2-b]pyrrole-9-carboni-trile (S1) was synthesized and shown to induce apoptosis in both (H22) hematoma and (MCF-7) ade-nocarcinoma cells. The IC_(50) values of S1 against the two cell lines were 0.17 and 0.09 μmol/L, respectively. Furthermore, the apoptosis-inducing activity of this compound was highlighted both in vivo and in vitro. Subsequent experiments identified Bcl-2 as the primary target of S1, as a significant reduction in Bcl-2 protein levels was observed in H22 cells following a two-hour treatment with 10 umol/L S1. While rapid depolarization of mitochondrial membranes led immediately to caspase 9 activation, no changes were identified in either caspase 8 levels or levels in Bcl-2 mRNA. These data were consistent with the results of circular dichroism (CD) spectra analysis, revealing that S1 inactivated the Bcl-2 protein by destroying its critical alpha helices. Taken together, these results suggest the potential of S1 in the development of new therapeutic agents.
机译:最近,合成了杂环化合物8-oxo-3-thiomorpholino-8H-ac [1,2-b]吡咯-9-碳腈(S1),并显示出可诱导(H22)血肿和(MCF- 7)腺癌细胞。 S1对两条细胞株的IC_(50)值分别为0.17和0.09μmol/ L。此外,在体内和体外都强调了该化合物的凋亡诱导活性。随后的实验确定Bcl-2是S1的主要靶标,因为在用10 umol / L S1处理2小时后,在H22细胞中观察到Bcl-2蛋白水平显着降低。线粒体膜的快速去极化立即导致caspase 9激活,但caspase 8水平或Bcl-2 mRNA水平均未发现变化。这些数据与圆二色性(CD)光谱分析的结果一致,表明S1通过破坏其关键的α螺旋使Bcl-2蛋白失活。两者合计,这些结果表明S1在开发新治疗剂中的潜力。

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