The antibiotic drug trimethoprim suppresses tumour growth and metastasis via targeting Snail

蜗牛 生物 转移 甲氧苄啶 药品 癌症研究 医学 药理学 内科学 癌症 微生物学 抗生素 生态学
作者
Bo‐Xue Ren,Yang Li,Hongmei Li,Tao Lu,Zhao‐Qiu Wu,Rong Fu
出处
期刊:British Journal of Pharmacology [Wiley]
卷期号:179 (11): 2659-2677 被引量:7
标识
DOI:10.1111/bph.15763
摘要

Background and Purpose The zinc finger transcription factor Snail is aberrantly activated in many human cancers and strongly associated with poor prognosis. As a transcription factor, Snail has been traditionally considered an ‘undruggable’ target. Here, we identified a potent small‐molecule inhibitor of Snail, namely trimethoprim, and investigated its potential antitumour effects and the underlying mechanisms. Experimental Approach The inhibitory action of trimethoprim on Snail protein and the related molecular mechanisms were revealed by molecular docking, biolayer interferometry, immunoblotting, immunoprecipitation, qRT‐PCR, pull‐down and cycloheximide pulse‐chase assays. The anti‐proliferative and anti‐metastatic effects of trimethoprim via targeting Snail were tested in multiple cell‐based assays and animal models. Key Results This study identified trimethoprim, an antimicrobial drug, as a potent antitumour agent via targeting Snail. Molecular modelling analysis predicted that trimethoprim directly binds to the arginine‐174 pocket of Snail protein. We further discovered that trimethoprim strongly interrupts the interaction of Snail with CREB‐binding protein (CBP)/p300, which consequently suppresses Snail acetylation and promotes Snail degradation through the ubiquitin‐proteasome pathway. Furthermore, trimethoprim sufficiently inhibited the proliferation, epithelial–mesenchymal transition (EMT) and migration of cancer cells in vitro via specifically targeting Snail. More importantly, trimethoprim effectively reduced Snail‐driven tumour growth and metastasis to vital organs such as lung, bone and liver. Conclusions and Implications These findings indicate, for the first time, that trimethoprim suppresses tumour growth and metastasis via targeting Snail. This study provides insights for a better understanding of the anticancer effects of trimethoprim and offers a potential anticancer therapeutic agent for clinical treatment.
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