College of Pharmacy and Yonsei Institute of Pharmaceutical Sciences, Yonsei University, 85 Songdogwahak-ro, Yeonsu-gu, Incheon 21983, Republic of Korea.
Department of Biotechnology, College of Life Science and Biotechnology, Yonsei University, Seoul 03722, Republic of Korea.
Bioorg Chem. 2020 Aug;101:104000. doi: 10.1016/j.bioorg.2020.104000. Epub 2020 Jun 8.
Chemical territory bearing a 2,2-dimethyl-2H-chromene motif was expanded by utilizing an o-hydroxy aldehyde group of 5-hydroxy-2,2-dimethyl-2H-chromene-6-carbaldehyde as a synthetic handle to install distinctive morphology and functionality of each scaffold. Cell based assays and in silico docking analysis led us to discover that these new compounds exhibit inhibitory effect on anoctamin1 (ANO1). ANO1 is amplified and highly expressed in various carcinomas including prostate cancer, esophageal cancer, breast cancer, and pancreatic cancer. Biological assays revealed that (E)-1-(7,7-dimethyl-7H-furo[2,3-f]chromen-2-yl)-3-(1H-pyrrol-2-yl)prop-2-en-1-one (3n, Ani-FCC) is a novel, potent and selective ANO1 inhibitor with an IC value of 1.23 μM. 3n showed 144 times stronger activity on ANO1 inhibition than ANO2 inhibition and did not alter the chloride channel activity of CFTR and the intracellular calcium signaling. Notably, 3n strongly decreased cell viability of PC-3 and FaDu cells expressing high levels of ANO1 with a decrease in ANO1 protein levels. In addition, 3n significantly enhanced apoptosis via activation of caspase 3 and cleavage of PARP in PC-3 and FaDu cells. This study shows that a novel ANO1 inhibitor, 3n, can be a potential candidate for the treatment of cancers overexpressing ANO1, such as prostate cancer and esophageal cancer.
化学领域通过利用 5-羟基-2,2-二甲基-2H-色烯-6-醛的邻-羟基醛基作为合成手柄,扩展了具有 2,2-二甲基-2H-色烯基序的化学领域,以安装每个支架的独特形态和功能。基于细胞的测定和计算机对接分析使我们发现,这些新化合物对 anoctamin1(ANO1)具有抑制作用。ANO1 在各种癌中扩增和高表达,包括前列腺癌、食道癌、乳腺癌和胰腺癌。生物测定显示,(E)-1-(7,7-二甲基-7H-呋喃[2,3-f]色烯-2-基)-3-(1H-吡咯-2-基)-2-烯-1-酮(3n,Ani-FCC)是一种新型、有效和选择性的 ANO1 抑制剂,IC 值为 1.23 μM。3n 对 ANO1 抑制的活性比 ANO2 抑制的活性强 144 倍,并且不改变 CFTR 的氯离子通道活性和细胞内钙信号。值得注意的是,3n 强烈降低了表达高水平 ANO1 的 PC-3 和 FaDu 细胞的细胞活力,同时降低了 ANO1 蛋白水平。此外,3n 通过激活 caspase 3 和切割 PARP 在 PC-3 和 FaDu 细胞中显著增强了细胞凋亡。这项研究表明,新型 ANO1 抑制剂 3n 可能成为治疗过度表达 ANO1 的癌症(如前列腺癌和食道癌)的潜在候选药物。