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Induction of drug resistance and transformation in human cancer cells by the noncoding RNA CUDR

机译:非编码RNA CUDR诱导人癌细胞的耐药性和转化

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摘要

Refractory to apoptosis induced by anticancer drugs is one of the major causes of drug resistance in human cancers. The involvement of noncoding RNA (ncRNA) in cancer cell drug resistance has not yet been reported. By using the technique of RT-PCR-based differential display, a novel gene, cancer up-regulated drug resistant (CUDR) gene, was found to be overexpressed in a doxorubicin-resistant subline of human squamous carcinoma A431 and A10A cells, which were also more resistant to drug-induced apoptosis. The full-length CUDR mRNA transcript is similar to 2.2 kb as detected by Northern blot analysis and has no sequence homology with other genes identified so far. Interestingly, no distinct open reading frame was found throughout the CUDR cDNA sequence, and no recombinant protein was detected from in vitro translation or from a protein lysate of human cancer cells after CUDR transfection. Therefore, CUDR is likely to exert its function as a noncoding RNA. Stable transfection with the CUDR gene was found to induce resistance to doxorubicin and etoposide as well as drug-induced apoptosis in A431 cells. By Western blot analysis, down-regulations of caspase 3 were observed in CUDR transfectants. On the other hand, overexpression of CUDR promoted anchorage-independent growth in A431 cells. Results from the present study suggest that CUDR may likely regulate the drug sensitivity and promote cellular transformation at least through caspase 3-dependent apoptosis.
机译:抗癌药诱导的凋亡难治是人类癌症耐药性的主要原因之一。尚未报道非编码RNA(ncRNA)与癌细胞的耐药性有关。通过使用基于RT-PCR的差异显示技术,发现一个新的基因,即癌症上调药物抗性(CUDR)基因在人鳞癌A431和A10A细胞的阿霉素抗性亚系中过表达。还对药物诱导的细胞凋亡具有更强的抵抗力。通过Northern印迹分析检测到的全长CUDR mRNA转录物类似于2.2kb,并且与迄今为止鉴定的其他基因没有序列同源性。有趣的是,在整个CUDR cDNA序列中未发现明显的开放阅读框,并且在CUDR转染后从体外翻译或人类癌细胞的蛋白裂解物中未检测到重组蛋白。因此,CUDR可能发挥其非编码RNA的功能。发现用CUDR基因稳定转染可诱导对阿霉素和依托泊苷的耐药性以及药物诱导的A431细胞凋亡。通过蛋白质印迹分析,在CUDR转染子中观察到caspase 3的下调。另一方面,CUDR的过表达促进了A431细胞的锚定非依赖性生长。本研究的结果表明,CUDR可能至少通过半胱天冬酶3依赖性凋亡来调节药物敏感性并促进细胞转化。

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