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开发氟利嗪类似物作为抑制素配体,调节 C-RAF 信号、p21 表达和黑色素生成。

Development of fluorizoline analogues as prohibitin ligands that modulate C-RAF signaling, p21 expression and melanogenesis.

机构信息

Regenerative Nanomedicine (UMR 1260), INSERM, University of Strasbourg, Center of Research in Biomedicine of Strasbourg, 1 Rue Eugène Boeckel, 67000, Strasbourg, France; Laboratory of Chemistry and Environmental Chemistry (LCCE), Department of Chemistry, Faculty of Sciences, Batna-1 University, Batna, Algeria.

Regenerative Nanomedicine (UMR 1260), INSERM, University of Strasbourg, Center of Research in Biomedicine of Strasbourg, 1 Rue Eugène Boeckel, 67000, Strasbourg, France.

出版信息

Eur J Med Chem. 2022 Nov 15;242:114635. doi: 10.1016/j.ejmech.2022.114635. Epub 2022 Aug 4.

Abstract

Fluorizoline is a cytotoxic trifluorothiazoline that targets the scaffold proteins prohibitins-1 and -2 (PHB1/2) to inhibit the kinase C-RAF and promote the expression of the cyclin-dependent kinase inhibitor p21 to induce cancer cell death. In melanocytes, fluorizoline also induces the synthesis of melanin. Herein we report the first structural requirement of fluorizoline analogues for these activities. We identified in particular some compounds that display enhanced anti-C-RAF and anti-MEK activities, and a higher cytotoxicity in HeLa cells compared to fluorizoline. These results provide a foundation for further optimization of PHB ligands for the treatment of cancers. We also discovered an analogue of fluorizoline that displays pharmacological effects opposed to those of fluorizoline and that can be used as a chemical tool to explore PHB signaling in cancers and other diseases.

摘要

氟利嗪啉是一种细胞毒性三氟噻唑啉,靶向支架蛋白抑制素-1 和 -2(PHB1/2),以抑制蛋白激酶 C-RAF 并促进细胞周期蛋白依赖性激酶抑制剂 p21 的表达,从而诱导癌细胞死亡。在黑色素细胞中,氟利嗪啉还诱导黑色素的合成。本文报道了氟利嗪啉类似物在这些活性方面的第一个结构要求。我们特别确定了一些化合物,它们与氟利嗪啉相比,显示出增强的抗 C-RAF 和抗 MEK 活性,以及在 HeLa 细胞中的更高细胞毒性。这些结果为进一步优化 PHB 配体治疗癌症提供了基础。我们还发现了一种氟利嗪啉类似物,它具有与氟利嗪啉相反的药理作用,可作为一种化学工具,用于研究癌症和其他疾病中的 PHB 信号。

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