Shen Zheng, She Qiang
Department of Cardiology, the Second Affiliated Hospital of Chongqing Medical University, Chongqing, China.
Department of Cardiology, the Affiliated Hospital of Guizhou Medical University, Guiyang, China.
Cell Physiol Biochem. 2018;49(4):1431-1443. doi: 10.1159/000493447. Epub 2018 Sep 11.
BACKGROUND/AIMS: LncRNA is a growth arrest-specific transcript 5 (GAS5) with tumor suppressor activities in some cancers, but its role in atherosclerosis is unclear.
Bioinformatics algorithm analysis was utilized to search the target of GAS5 and miR-21, followed by luciferase assay to confirm these targets. Real-time PCR and western-blot were utilized to verify the connection among GAS5, miR-21 and Programmed cell death 4 (PDCD4). MTT assay and flow cytometry analysis were performed to explore the mechanism of GAS5 in the regulation of atherosclerosis.
GAS5 directly targets miR-21 and functions as a competing endogenous RNA to suppress miR-21 expression. We also observed that rs145204276 polymorphism, including INS/INS and DEL/DEL, on GAS5 promoter increased transcription activity of GAS5, but the presence of rs145204276 DEL/DEL allele significantly promoted the transcription of GAS5 promoter compared with rs145204276 INS/INS allele. PDCD4 was predicted as a direct target gene of miR-21 with a binding site on PDCD4 3'UTR. It was further confirmed by luciferase assay that miR-21 significantly reduced the luciferase activity of wild-type PDCD4 3'UTR but not that of mutant PDCD4 3'UTR. In addition, high glucose significantly inhibited the growth rate of EC genotyped as DEL/DEL or INS/ INS, and apparently promoted the apoptotic rate of either DEL/DEL or INS/INS genotype ECs. Furthermore, the effect of high glucose was stronger in the INS/INS group, while the expression of GAS5 was dramatically upregulated with the presence of GAS5 DEL/DEL, while GAS5 positively regulated PDCD4 expression via inhibiting miR-21 expression. GAS5 siRNA and miR-21 mimics significantly decreased GAS5 and PDCD4 expressions, and the inhibitory effects of GAS5 siRNA or miR-21 mimics on GAS5 and PDCD4 expressions in the INS/INS group was stronger. Moreover, GAS5 siRNA and miR-21 mimics remarkably triggered cells proliferation and suppressed cell apoptosis, and the inhibition effects of GAS5 siRNA or miR-21 mimics on either cell viability and apoptosis in the INS/INS group was stronger. In this study, we enrolled 1,306 subjects with or without atherosclerosis and found that the INS/DEL or DEL/DEL genotypes significantly decreased the risk of atherosclerosis compared with the ins/ins genotype (adjusted odds ratio: 0.74 and 0.40, respectively).
In summary, rs145204276 was associated with the risk of atherosclerosis by affecting the proliferation and apoptosis of endothelial cells via regulating the GAS5/miR-21/PDCD4 signaling pathway.
背景/目的:长链非编码RNA生长停滞特异性转录本5(GAS5)在某些癌症中具有肿瘤抑制活性,但其在动脉粥样硬化中的作用尚不清楚。
利用生物信息学算法分析来搜索GAS5和miR-21的靶标,随后进行荧光素酶测定以确认这些靶标。利用实时聚合酶链反应和蛋白质免疫印迹法来验证GAS5、miR-21和程序性细胞死亡4(PDCD4)之间的联系。进行MTT试验和流式细胞术分析以探究GAS5在动脉粥样硬化调节中的机制。
GAS5直接靶向miR-21,并作为竞争性内源RNA发挥作用以抑制miR-21表达。我们还观察到,GAS5启动子上的rs145204276多态性(包括INS/INS和DEL/DEL)增加了GAS5的转录活性,但与rs145204276 INS/INS等位基因相比,rs145204276 DEL/DEL等位基因的存在显著促进了GAS5启动子的转录。PDCD4被预测为miR-21的直接靶基因,在PDCD4 3'非翻译区有一个结合位点。荧光素酶测定进一步证实,miR-21显著降低野生型PDCD4 3'非翻译区的荧光素酶活性,但不降低突变型PDCD4 3'非翻译区的荧光素酶活性。此外,高糖显著抑制基因型为DEL/DEL或INS/INS的内皮细胞的生长速率,并明显促进DEL/DEL或INS/INS基因型内皮细胞的凋亡率。此外,高糖在INS/INS组中的作用更强,而在存在GAS5 DEL/DEL时GAS5的表达显著上调,而GAS5通过抑制miR-21表达正向调节PDCD4表达。GAS5小干扰RNA和miR-21模拟物显著降低GAS5和PDCD4的表达,并且GAS5小干扰RNA或miR-21模拟物对INS/INS组中GAS5和PDCD4表达 的抑制作用更强。此外,GAS5小干扰RNA和miR-21模拟物显著促进细胞增殖并抑制细胞凋亡,并且GAS5小干扰RNA或miR-21模拟物对INS/INS组中细胞活力和凋亡的抑制作用更强。在本研究中,我们纳入了1306名有或没有动脉粥样硬化的受试者,发现与ins/ins基因型相比,INS/DEL或DEL/DEL基因型显著降低了动脉粥样硬化的风险(校正比值比分别为0.74和0.40)。
总之,rs145204276通过调节GAS5/miR-21/PDCD4信号通路影响内皮细胞的增殖和凋亡,与动脉粥样硬化风险相关。