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DNA损伤诱导的长链非编码RNA SCAT7调节肺腺癌中的基因组完整性和拓扑异构酶1周转。

The DNA damage inducible lncRNA SCAT7 regulates genomic integrity and topoisomerase 1 turnover in lung adenocarcinoma.

作者信息

Statello Luisa, Ali Mohamad M, Reischl Silke, Mahale Sagar, Kosalai Subazini Thankaswamy, Huarte Maite, Kanduri Chandrasekhar

机构信息

Department of Medical Biochemistry and Cell Biology, The Sahlgrenska Academy, Institute of Biomedicine, University of Gothenburg, SE-40530 Gothenburg, Sweden.

Department of Gene Therapy and Regulation of Gene Expression, Center for Applied Medical Research, University of Navarra, Pamplona 31008, Spain.

出版信息

NAR Cancer. 2021 Feb 1;3(1):zcab002. doi: 10.1093/narcan/zcab002. eCollection 2021 Mar.

Abstract

Despite the rapid improvements in unveiling the importance of lncRNAs in all aspects of cancer biology, there is still a void in mechanistic understanding of their role in the DNA damage response. Here we explored the potential role of the oncogenic lncRNA SCAT7 (ELF3-AS1) in the maintenance of genome integrity. We show that SCAT7 is upregulated in response to DNA-damaging drugs like cisplatin and camptothecin, where SCAT7 expression is required to promote cell survival. SCAT7 silencing leads to decreased proliferation of cisplatin-resistant cells and through interfering with cell cycle checkpoints and DNA repair molecular pathways. SCAT7 regulates ATR signaling, promoting homologous recombination. Importantly, SCAT7 also takes part in proteasome-mediated topoisomerase I (TOP1) degradation, and its depletion causes an accumulation of TOP1-cc structures responsible for the high levels of intrinsic DNA damage. Thus, our data demonstrate that SCAT7 is an important constituent of the DNA damage response pathway and serves as a potential therapeutic target for hard-to-treat drug resistant cancers.

摘要

尽管在揭示长链非编码RNA(lncRNAs)在癌症生物学各个方面的重要性方面取得了快速进展,但在对其在DNA损伤反应中的作用的机制理解上仍存在空白。在此,我们探讨了致癌lncRNA SCAT7(ELF3-AS1)在维持基因组完整性中的潜在作用。我们发现,在顺铂和喜树碱等DNA损伤药物作用下,SCAT7表达上调,且其表达对于促进细胞存活是必需的。SCAT7沉默导致顺铂耐药细胞增殖减少,并通过干扰细胞周期检查点和DNA修复分子途径来实现。SCAT7调节ATR信号传导,促进同源重组。重要的是,SCAT7还参与蛋白酶体介导的拓扑异构酶I(TOP1)降解,其缺失会导致TOP1-cc结构积累,而这些结构会导致高水平的内源性DNA损伤。因此,我们的数据表明,SCAT7是DNA损伤反应途径的重要组成部分,可作为难治性耐药癌症的潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43ff/8209975/c0c19bdaf2d2/zcab002gra1.jpg

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