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首页> 外文期刊>Cell death & disease. >Mitochondrial ncRNA targeting induces cell cycle arrest and tumor growth inhibition of MDA-MB-231 breast cancer cells through reduction of key cell cycle progression factors
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Mitochondrial ncRNA targeting induces cell cycle arrest and tumor growth inhibition of MDA-MB-231 breast cancer cells through reduction of key cell cycle progression factors

机译:通过减少关键细胞周期进展因子,线粒体NCRNA靶向MDA-MB-231乳腺癌细胞的细胞周期停滞和肿瘤生长抑制

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The family of long noncoding mitochondrial RNAs (ncmtRNAs), comprising sense (SncmtRNA), and antisense (ASncmtRNA-1 and ASncmtRNA-2) members, are differentially expressed according to cell proliferative status; SncmtRNA is expressed in all proliferating cells, while ASncmtRNAs are expressed in normal proliferating cells, but is downregulated in tumor cells. ASncmtRNA knockdown with an antisense oligonucleotide induces massive apoptosis in tumor cell lines, without affecting healthy cells. Apoptotic death is preceded by proliferation blockage, suggesting that these transcripts are involved in cell cycle regulation. Here, we show that ASncmtRNA knockdown induces cell death preceded by proliferative blockage in three different human breast cancer cell lines. This effect is mediated by downregulation of the key cell cycle progression factors cyclin B1, cyclin D1, CDK1, CDK4, and survivin, the latter also constituting an essential inhibitor of apoptosis, underlying additionally the onset of apoptosis. The treatment also induces an increase in the microRNA hsa-miR-4485-3p, whose sequence maps to ASncmtRNA-2 and transfection of MDA-MB-231 cells with a mimic of this miRNA induces cyclin B1 and D1 downregulation. Other miRNAs that are upregulated include nuclear-encoded hsa-miR-5096 and hsa-miR-3609, whose mimics downregulate CDK1. Our results suggest that ASncmtRNA targeting blocks tumor cell proliferation through reduction of essential cell cycle proteins, mediated by mitochondrial and nuclear miRNAs. This work adds to the elucidation of the molecular mechanisms behind cell cycle arrest preceding tumor cell apoptosis induced by ASncmtRNA knockdown. As proof-of-concept, we show that in vivo knockdown of ASncmtRNAs results in drastic inhibition of tumor growth in a xenograft model of MDA-MB-231 subcutaneous tumors, further supporting this approach for the development of new therapeutic strategies against breast cancer.
机译:根据细胞增殖状态差异表达,包括感觉(SNCMTRNA)和反义(ASNCTRNA-1和ASNCMTRNA-2)构成的长非沉积线粒体RNA(NCMTRNA)系列; SNCTRNA在所有增殖细胞中表达,而ASNCTNA在正常增殖细胞中表达,但在肿瘤细胞中下调。 asncmtrna用反义寡核苷酸敲低突出肿瘤细胞系中的大量凋亡,而不影响健康细胞。凋亡死亡前面是增殖阻断,表明这些转录物参与细胞周期调节。在这里,我们表明Asncmtrna敲低诱导细胞死亡前三种不同人乳腺癌细胞系中的增殖性堵塞。这种效果是通过关键细胞周期进展系数Cyclin B1,Cyclin D1,CDK1,CDK4和Survivin的下调介导的,后者也构成了凋亡的基本抑制剂,潜在凋亡的发病。该治疗还诱导MicroRNA HSA-miR-4485-3P的增加,其序列映射到Asnctna-2的映射和转染MDA-MB-231细胞与该miRNA的模拟诱导细胞周期蛋白B1和D1下调。上调的其他miRNA包括核编码的HSA-miR-5096和HSA-miR-3609,其模仿下调CDK1。我们的结果表明,Asnctna靶向通过减少由线粒体和核MiRNA介导的必需细胞周期蛋白来阻断肿瘤细胞增殖。本作作品增加了AsnCtna敲低诱导的肿瘤细胞凋亡的细胞周期滞留后的分子机制。作为概念验证,我们认为在Vivo敲低的AsncMtrnas导致MDA-MB-231皮下肿瘤的异种移植模型中肿瘤生长的激烈抑制,进一步支持这种抗乳腺癌新治疗策略的方法。

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