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戊二脒抑制 S100A4-p53 相互作用,降低细胞增殖活性。

Pentamidine inhibit S100A4 - p53 interaction and decreases cell proliferation activity.

机构信息

Department of Chemistry, National Tsing Hua University, Hsinchu, 30013, Taiwan.

Graduate Institute of Cancer Biology and Center for Molecular Medicine, China Medical University, Taichung, Taiwan.

出版信息

Arch Biochem Biophys. 2020 Sep 30;691:108442. doi: 10.1016/j.abb.2020.108442. Epub 2020 Jul 7.

Abstract

Metastasis-associated S100A4 protein is a small calcium-binding protein typically overexpressed in several tumor forms, and it is widely accepted that S100A4 plays a significant role in the metastasis of cancer. Tumor suppressor p53 is one of the S100A4's main targets. Previous reports show that through p53, S100A4 regulates collagen expression and cell proliferation. When S100A4 interacts with p53, the S100A4 destabilizes wild type p53. In the current study, based on H-N HSQC NMR experiments and HADDOCK results, S100A4 interacts with the intrinsically unstructured transactivation domain (TAD) of the protein p53 and the pentamidine molecules in the presence of calcium ions. Our results suggest that the p53 TAD and pentamidine molecules share similar binding sites on the S100A4 protein. This observation indicates that a competitive binding mechanism can interfere with the binding of S100A4-p53 and increase the level of p53. Also, we compare different aspects of p53 activity in the WST-1 test using MCF 7 cells. We found that the presence of a pentamidine molecule results in higher p53 activity, which is also reflected in less cell proliferation. Collectively, our results indicate that disrupting the S100A4-p53 interaction would prevent cancer progression, and thus S100A4-p53 inhibitors provide a new avenue for cancer therapy.

摘要

转移相关的 S100A4 蛋白是一种小型钙结合蛋白,通常在几种肿瘤形式中过表达,人们普遍认为 S100A4 在癌症转移中起着重要作用。肿瘤抑制因子 p53 是 S100A4 的主要靶点之一。先前的报告表明,通过 p53,S100A4 调节胶原蛋白表达和细胞增殖。当 S100A4 与 p53 相互作用时,S100A4 会使野生型 p53 失稳。在本研究中,基于 H-N HSQC NMR 实验和 HADDOCK 结果,S100A4 在钙离子存在下与蛋白 p53 的固有无规卷曲转激活域(TAD)和戊二脒分子相互作用。我们的结果表明,p53 TAD 和戊二脒分子在 S100A4 蛋白上共享相似的结合位点。这一观察表明,竞争结合机制可以干扰 S100A4-p53 的结合并增加 p53 的水平。此外,我们使用 MCF 7 细胞在 WST-1 测试中比较了 p53 活性的不同方面。我们发现,戊二脒分子的存在导致 p53 活性更高,这也反映在细胞增殖减少。总之,我们的结果表明,破坏 S100A4-p53 相互作用将阻止癌症进展,因此 S100A4-p53 抑制剂为癌症治疗提供了新途径。

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