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苯并噻唑衍生物(5g)诱导癌细胞 DNA 损伤和强烈的 G2/M 期阻滞。

A Benzothiazole Derivative (5g) Induces DNA Damage And Potent G2/M Arrest In Cancer Cells.

机构信息

Department of Biochemistry, Indian Institute of Science, Bangalore, 560012, India.

Department of Studies in Chemistry, University of Mysore, Mysuru, 570006, India.

出版信息

Sci Rep. 2017 May 31;7(1):2533. doi: 10.1038/s41598-017-02489-3.

Abstract

Chemically synthesized small molecules play important role in anticancer therapy. Several chemical compounds have been reported to damage the DNA, either directly or indirectly slowing down the cancer cell progression by causing a cell cycle arrest. Direct or indirect reactive oxygen species formation causes DNA damage leading to cell cycle arrest and subsequent cell death. Therefore, identification of chemically synthesized compounds with anticancer potential is important. Here we investigate the effect of benzothiazole derivative (5g) for its ability to inhibit cell proliferation in different cancer models. Interestingly, 5g interfered with cell proliferation in both, cell lines and tumor cells leading to significant G2/M arrest. 5g treatment resulted in elevated levels of ROS and subsequently, DNA double-strand breaks (DSBs) explaining observed G2/M arrest. Consistently, we observed deregulation of many cell cycle associated proteins such as CDK1, BCL2 and their phosphorylated form, CyclinB1, CDC25c etc. Besides, 5g treatment led to decreased levels of mitochondrial membrane potential and activation of apoptosis. Interestingly, 5g administration inhibited tumor growth in mice without significant side effects. Thus, our study identifies 5g as a potent biochemical inhibitor to induce G2/M phase arrest of the cell cycle, and demonstrates its anticancer properties both ex vivo and in vivo.

摘要

化学合成的小分子在抗癌治疗中发挥着重要作用。已经有几种化学化合物被报道可以通过引起细胞周期停滞来直接或间接地破坏 DNA,从而减缓癌细胞的进展。直接或间接的活性氧物质的形成会导致 DNA 损伤,从而导致细胞周期停滞和随后的细胞死亡。因此,鉴定具有抗癌潜力的化学合成化合物是很重要的。在这里,我们研究了苯并噻唑衍生物(5g)抑制不同癌症模型中细胞增殖的能力。有趣的是,5g 干扰了细胞系和肿瘤细胞的增殖,导致明显的 G2/M 期阻滞。5g 处理导致 ROS 水平升高,随后导致 DNA 双链断裂(DSBs),解释了观察到的 G2/M 期阻滞。一致地,我们观察到许多细胞周期相关蛋白的失调,如 CDK1、BCL2 及其磷酸化形式 CyclinB1、CDC25c 等。此外,5g 处理导致线粒体膜电位降低和凋亡激活。有趣的是,5g 的给药抑制了小鼠的肿瘤生长,没有明显的副作用。因此,我们的研究确定 5g 是一种有效的生化抑制剂,可以诱导细胞周期的 G2/M 期阻滞,并在体内外证明了其抗癌特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4be4/5451441/ca266c753411/41598_2017_2489_Fig1_HTML.jpg

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