敲低死亡受体5反义长链非编码RNA和顺铂治疗可调节HeLa细胞类似的大分子和代谢变化。

Dilek Cansu Gürer, İpek Erdoğan Vatansever, Çağatay Ceylan, Bünyamin Akgül
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引用次数: 1

摘要

背景/目的:尽管在动态肿瘤微环境中复杂基因调控机制的研究取得了很大进展,但长链非编码rna (lncRNAs)对癌细胞代谢的潜在贡献尚不清楚。死亡受体5反义(DR5-AS)是一种顺铂诱导的lncRNA,其敲低可调节细胞形态。然而,其对细胞代谢的影响尚不清楚。本研究的目的是研究顺铂和DR5-AS lncRNA在HeLa细胞中调节的代谢变化。材料和方法:我们将顺铂作为一种通用的癌症治疗药物来调节HeLa宫颈癌细胞的代谢变化。然后我们用傅里叶变换红外光谱(FTIR)检测了代谢变化的程度。我们还通过从顺铂处理的HeLa细胞中分离的总rna产生新的RNA-seq数据进行转录组学分析。然后,我们比较了顺铂介导的转录组学和大分子变化与DR5-AS敲低介导的转录组学和大分子变化。结果:顺铂治疗引起不饱和脂肪酸、脂蛋白比和糖原含量的改变。这些在细胞代谢改变中的观察结果得到转录组学分析的支持。FTIR光谱分析显示,DR5-AS敲低导致脂质/蛋白比升高20.9%,脂质过氧化降低76.6%。此外,我们检测到脂肪脂链长度增加了3.42%,RNA含量较高,糖原含量较低,表明DR5-AS敲除的HeLa细胞代谢活性相对较低。有趣的是,我们在顺铂治疗和DR5-AS敲除HeLa细胞下观察到类似的基因表达模式。结论:这些结果表明DR5-AS lncRNA似乎在HeLa宫颈癌细胞中顺铂介导的大分子和代谢变化中占一部分。
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Knockdown of death receptor 5 antisense long noncoding RNA and cisplatin treatment modulate similar macromolecular and metabolic changes in HeLa cells.

Background/aim: Despite great progress in complex gene regulatory mechanisms in the dynamic tumor microenvironment, the potential contribution of long noncoding RNAs (lncRNAs) to cancer cell metabolism is poorly understood. Death receptor 5 antisense (DR5-AS) is a cisplatin inducible lncRNA whose knockdown modulates cell morphology. However, its effect on cell metabolism is unknown. The aim of this study is to examine metabolic changes modulated by cisplatin and DR5-AS lncRNA in HeLa cells.

Materials and methods: We used cisplatin as a universal cancer therapeutic drug to modulate metabolic changes in HeLa cervix cancer cells. We then examined the extent of metabolic changes by Fourier transform infrared spectroscopy (FTIR). We also performed transcriptomics analyses by generating new RNA-seq data with total RNAs isolated from cisplatin-treated HeLa cells. Then, we compared cisplatin-mediated transcriptomics and macromolecular changes with those mediated by DR5-AS knockdown.

Results: Cisplatin treatment caused changes in the unsaturated fatty acid and lipid-to-protein ratios and the glycogen content. These observations in altered cellular metabolism were supported by transcriptomics analyses. FTIR spectroscopy analyses have revealed that DR5-AS knockdown causes a 20.9% elevation in the lipid/protein ratio and a 76.6% decrease in lipid peroxidation. Furthermore, we detected a 3.42% increase in the chain length of the aliphatic lipids, a higher content of RNA, and a lower amount of glycogen indicating relatively lower metabolic activity in the DR5-AS knockdown HeLa cells. Interestingly, we observed a similar gene expression pattern under cisplatin treatment and DR5-AS knockdown HeLa cells.

Conclusion: These results suggest that DR5-AS lncRNA appears to account for a fraction of cisplatin-mediated macromolecular and metabolic changes in HeLa cervix cancer cells.

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