Expression of the circular RNAs in astaxanthin promotes cholesterol efflux from THP-1 cells based on RNA-seq.

Jie Liu, Yue Wei, Yong Lin, Peiwen Zhang, Zhexiao Zhang, Hairong Huang, Hongfu Wu, Tangbin Zou
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引用次数: 7

Abstract

Background: It is reported that circular RNAs (circRNAs) play a key role in atherosclerosis (AS). Foam cell formation, which is the main feature of AS, can be significantly inhibited by cholesterol efflux.

Methods: We established a model of astaxanthin (AST) promoting cholesterol efflux from macrophages through oil red O staining, real-time quantitative PCR (qRT-PCR), and western blot and used RNA sequencing to detect the expression of circRNAs in AST-treated and untreated THP-1 cells. Finally, siRNA transfection screened out circRNAs that were significantly differentially expressed. The data analysis was performed by Student's t test and P < 0.05 was considered statistically significant.

Results: In the model of AST promoting cholesterol efflux from THP-1 cells, there were a total of 7276 circRNAs differentially expressed, among which the top 25 upregulated and the top 25 downregulated circRNAs were selected based on the log2 (fold change). GO analysis showed that differential expression of circRNAs in biological process (2066/3098; 66.69%), molecular function (543/3098; 17.53%), and cellular component (489/3098; 15.78%). Based on KEGG analysis, RNA transport was the most enriched pathway. Finally, we obtained 3 significantly upregulated circRNAs by siRNA transfection and qRT-PCR.

Conclusions: The 3 differentially expressed circRNAs may play an important role in the process of AST promoting cholesterol efflux and may be used as biomarkers to prevent AS.

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基于rna测序,虾青素中环状rna的表达促进THP-1细胞的胆固醇外排。
背景:据报道,环状rna (circRNAs)在动脉粥样硬化(AS)中起着关键作用。泡沫细胞的形成是AS的主要特征,可被胆固醇外排显著抑制。方法:通过油红O染色、实时定量PCR (qRT-PCR)和western blot建立虾青素(AST)促进巨噬细胞胆固醇外排模型,并利用RNA测序检测AST处理和未处理的THP-1细胞中circRNAs的表达。最后,siRNA转染筛选出显著差异表达的环状rna。数据分析采用Student’st检验,P < 0.05为差异有统计学意义。结果:在AST促进THP-1细胞胆固醇外排模型中,共有7276个circrna差异表达,其中根据log2 (fold change)选择了前25个上调环状rna和前25个下调环状rna。GO分析显示circRNAs在生物过程中的差异表达(2066/3098;66.69%),分子功能(543/3098;17.53%),细胞成分(489/3098;15.78%)。根据KEGG分析,RNA转运是最富集的途径。最后,我们通过siRNA转染和qRT-PCR获得了3个显著上调的环状rna。结论:3种差异表达的circrna可能在AST促进胆固醇外排过程中发挥重要作用,可能作为预防as的生物标志物。
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