首页> 外文期刊>Molecular cancer therapeutics >G-quadruplex ligand SYUIQ-5 induces autophagy by telomere damage and TRF2 delocalization in cancer cells.
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G-quadruplex ligand SYUIQ-5 induces autophagy by telomere damage and TRF2 delocalization in cancer cells.

机译:G-四链体配体SYUIQ-5通过端粒损伤和TRF2离域作用诱导癌细胞自噬。

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摘要

Agents stabilizing G-quadruplexes have the potential to destroy the functional structure of telomere and could therefore act as antitumor agents. We previously reported that SYUIQ-5 could stabilize G-quadruplex, induce senescence, and inhibit c-myc gene promoter activity. In this study, we showed that SYUIQ-5 inhibited proliferation of CNE2 and HeLa cancer cells, triggered a rapid and potent telomere DNA damage response characterized by the formation of telomeric foci gamma-H2AX, and obviously induced autophagy with the features of increased LC3-II and a punctuated pattern of YFP-LC3 fluorescence. These phenomena may primarily depend on the delocalization of TRF2 from telomere, which was further degraded by proteasomes. Furthermore, overexpression of TRF2 inhibited SYUIQ-5-induced gamma-H2AX expression. Also, ATM was activated following SYUIQ-5 treatment. The pretreatment with ATM inhibitor ku55933 and ATM siRNA effectively reduced the production of gamma-H2AX and LC3-II. ATM knockdown partially antagonized the anticancer effects of SYUIQ-5. Moreover, inhibition of autophagy by short hairpin RNA against the autophagy-related gene ATG5 attenuated the cytotoxicity of SYUIQ-5. These results indicated that SYUIQ-5 triggered potent telomere damage through TRF2 delocalization from telomeres, and eventually induced autophagic cell death in cancer cells. Our findings exhibit a novel mechanism that is responsible for the antitumor effects of SYUIQ-5.
机译:稳定G-四链体的药物具有破坏端粒功能结构的潜力,因此可以用作抗肿瘤药。我们以前曾报道SYUIQ-5可以稳定G-四链体,诱导衰老并抑制c-myc基因启动子活性。在这项研究中,我们显示SYUIQ-5抑制CNE2和HeLa癌细胞的增殖,引发快速有效的端粒DNA损伤反应,其特征是端粒灶gamma-H2AX的形成,并明显诱导自噬,并具有LC3增加的特征。 II和YFP-LC3荧光的点状图案。这些现象可能主要取决于TRF2从端粒的离域,端粒被蛋白酶体进一步降解。此外,TRF2的过表达抑制SYUIQ-5诱导的γ-H2AX表达。同样,在SYUIQ-5处理后激活了ATM。用ATM抑制剂ku55933和ATM siRNA进行的预处理有效地减少了γ-H2AX和LC3-II的产生。 ATM组合式部分拮抗SYUIQ-5的抗癌作用。此外,短发夹RNA对自噬相关基因ATG5的自噬抑制抑制了SYUIQ-5的细胞毒性。这些结果表明,SYUIQ-5通过TRF2从端粒的脱位触发了有效的端粒损伤,并最终导致癌细胞自噬细胞死亡。我们的发现展示了一种新型机制,该机制负责SYUIQ-5的抗肿瘤作用。

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