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8-羟基喹啉衍生物通过多种机制抑制GLI1介导的转录。

8-Hydroxyquinoline derivatives suppress GLI1-mediated transcription through multiple mechanisms.

作者信息

Wen Jiachen, Charan Dash Radha, Zaino Angela M, Harrahill Noah J, Calhoun Jackson T, Dusek Christopher O, Morel Shana R, Russolillo Matthew, Kyle Hadden M

机构信息

Department of Pharmaceutical Sciences, University of Connecticut, 69 North Eagleville Rd, Unit 3092, Storrs, CT 06029-3092, United States.

Department of Pharmaceutical Sciences, University of Connecticut, 69 North Eagleville Rd, Unit 3092, Storrs, CT 06029-3092, United States.

出版信息

Bioorg Chem. 2023 Mar;132:106387. doi: 10.1016/j.bioorg.2023.106387. Epub 2023 Jan 21.

Abstract

Aberrant activation of the Hedgehog (Hh) signaling pathway has been observed in various human malignancies. Glioma-associated oncogene transcription factor 1 (GLI1) is the ultimate effector of the canonical Hh pathway and has also been identified as a common regulator of several tumorigenic pathways prevalent in Hh-independent cancers. The anti-cancer potential of GLI1 antagonism with small molecule inhibitors has demonstrated initial promise; however, the continued development of GLI1 inhibitors is still needed. We previously identified a scaffold containing an 8-hydroxyquinoline as a promising lead GLI1 inhibitor (compound 1). To further develop this scaffold, we performed a systematic structure-activity relationship study to map the structural requirements of GLI1 inhibition by this chemotype. A series of biophysical and cellular experiments identified compound 39 as an enhanced GLI1 inhibitor with improved activity. In addition, our studies on this scaffold suggest a potential role for SRC family kinases in regulating oncogenic GLI1 transcriptional activity.

摘要

在多种人类恶性肿瘤中均观察到刺猬信号通路(Hh)的异常激活。胶质瘤相关致癌基因转录因子1(GLI1)是经典Hh信号通路的最终效应因子,也被确定为几种在非Hh依赖性癌症中普遍存在的致癌途径的共同调节因子。使用小分子抑制剂拮抗GLI1的抗癌潜力已初步显现;然而,仍需要继续开发GLI1抑制剂。我们之前鉴定出一种含有8-羟基喹啉的骨架作为一种有前景的先导GLI1抑制剂(化合物1)。为了进一步开发这种骨架,我们进行了系统的构效关系研究,以确定这种化学类型抑制GLI1的结构要求。一系列生物物理和细胞实验确定化合物39是一种活性增强的GLI1抑制剂。此外,我们对这种骨架的研究表明,SRC家族激酶在调节致癌性GLI1转录活性中可能发挥作用。

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