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基于计算机/体外的从苗头化合物到先导化合物的优化方法得到了 SMYD3 抑制剂,该抑制剂能够消除乳腺癌细胞不受控制的增殖。

In Silico/In Vitro Hit-to-Lead Methodology Yields SMYD3 Inhibitor That Eliminates Unrestrained Proliferation of Breast Carcinoma Cells.

机构信息

Cell and Molecular Biology Program, Colorado State University, Fort Collins, CO 80523-1005, USA.

Department of Biology, University of Tabuk, Tabuk 47713, Saudi Arabia.

出版信息

Int J Mol Sci. 2020 Dec 15;21(24):9549. doi: 10.3390/ijms21249549.

Abstract

SMYD3 is a lysine methyltransferase that regulates the expression of over 80 genes and is required for the uncontrolled proliferation of most breast, colorectal, and hepatocellular carcinomas. The elimination of SMYD3 restores normal expression patterns of these genes and halts aberrant cell proliferation, making it a promising target for small molecule inhibition. In this study, we sought to establish a proof of concept for our in silico/in vitro hit-to-lead enzyme inhibitor development platform and to identify a lead small molecule candidate for SMYD3 inhibition. We used Schrodinger software to screen libraries of small molecules in silico and the five compounds with the greatest predicted binding affinity within the SMYD3 binding pocket were purchased and assessed in vitro in direct binding assays and in breast cancer cell lines. We have confirmed the ability of one of these inhibitors, Inhibitor-4, to restore normal rates of cell proliferation, arrest the cell cycle, and induce apoptosis in breast cancer cells without affecting wildtype cell behavior. Our results provide a proof of concept for this fast and affordable small molecule hit-to-lead methodology as well as a promising candidate small molecule SMYD3 inhibitor for the treatment of human cancer.

摘要

SMYD3 是一种赖氨酸甲基转移酶,它调节着超过 80 个基因的表达,并且是大多数乳腺癌、结直肠癌和肝细胞癌不受控制增殖所必需的。消除 SMYD3 会恢复这些基因的正常表达模式,并阻止异常细胞增殖,使其成为小分子抑制的有前途的靶点。在这项研究中,我们试图为我们的计算/体外命中到先导酶抑制剂开发平台建立一个概念验证,并确定用于 SMYD3 抑制的先导小分子候选物。我们使用 Schrödinger 软件对小分子库进行了计算机筛选,购买了在 SMYD3 结合口袋中具有最大预测结合亲和力的 5 种化合物,并在直接结合测定和乳腺癌细胞系中进行了体外评估。我们已经证实了其中一种抑制剂(Inhibitor-4)能够恢复乳腺癌细胞的正常增殖率,阻止细胞周期,并诱导细胞凋亡,而不影响野生型细胞的行为。我们的结果为这种快速且经济实惠的小分子命中到先导方法提供了概念验证,同时也为治疗人类癌症的 SMYD3 抑制剂提供了一种有前途的小分子候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67e3/7765450/f0f1c10b1c1f/ijms-21-09549-g001.jpg

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