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基于吩嗪的MEMO1小分子抑制剂的鉴定:虚拟筛选、荧光偏振验证及对乳腺癌迁移的抑制作用

Identification of Phenazine-Based MEMO1 Small-Molecule Inhibitors: Virtual Screening, Fluorescence Polarization Validation, and Inhibition of Breast Cancer Migration.

作者信息

Labrecque Courtney L, Hilton Cassidy N, Airas Justin, Blake Alexis, Rubenstein Kristen J, Parish Carol A, Pollock Julie A

机构信息

Department of Chemistry, University of Richmond, 138 UR Drive, Richmond, VA 23173, USA.

出版信息

ChemMedChem. 2021 Apr 8;16(7):1163-1171. doi: 10.1002/cmdc.202000797. Epub 2021 Jan 26.

Abstract

Phosphorylation-dependent protein-protein interactions play a significant role in biological signaling pathways; therefore, small molecules that are capable of influencing these interactions can be valuable research tools and have potential as pharmaceutical agents. MEMO1 (mediator of ErbB2-cell driven motility) is a phosphotyrosine-binding protein that interacts with a variety of protein partners and has been found to be upregulated in breast cancer patients. Herein, we report the first small-molecule inhibitors of MEMO1 interactions identified through a virtual screening platform and validated in a competitive fluorescence polarization assay. Initial structure-activity relationships have been investigated for these phenazine-core inhibitors and the binding sites have been postulated using molecular dynamics simulations. The most potent biochemical inhibitor is capable of disrupting the large protein interface with a K of 2.7 μm. In addition, the most promising phenazine core compounds slow the migration of breast cancer cell lines in a scratch assay.

摘要

磷酸化依赖性蛋白质-蛋白质相互作用在生物信号通路中起着重要作用;因此,能够影响这些相互作用的小分子可以成为有价值的研究工具,并具有作为药物制剂的潜力。MEMO1(ErbB2细胞驱动运动的介质)是一种磷酸酪氨酸结合蛋白,它与多种蛋白质伙伴相互作用,并且已发现在乳腺癌患者中上调。在此,我们报告了通过虚拟筛选平台鉴定并在竞争性荧光偏振测定中得到验证的首批MEMO1相互作用的小分子抑制剂。已对这些吩嗪核心抑制剂的初步构效关系进行了研究,并使用分子动力学模拟推测了结合位点。最有效的生化抑制剂能够以2.7 μm的解离常数破坏大的蛋白质界面。此外,最有前景的吩嗪核心化合物在划痕试验中减缓了乳腺癌细胞系的迁移。

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