Luo Dong, Liu Yunfei, Li Zhiqiang, Zhu Hongwei, Yu Xiao
Department of Hepatopancreatobiliary Surgery, Third Xiangya Hospital, Central South University, Changsha, China.
Front Cell Dev Biol. 2021 Sep 28;9:736980. doi: 10.3389/fcell.2021.736980. eCollection 2021.
The role of NR2F1-AS1 in pancreatic ductal adenocarcinoma (PDAC) remains unknown. Therefore, we aimed to investigate the biological mechanism of NR2F1-AS1 in PDAC. The expression of NR2F1-AS1 was measured by using microarray data and real-time PCR. The effects of NR2F1-AS1 knockdown on proliferation, cell cycle progression, invasion and tumorigenesis were investigated. The mechanism of competitive endogenous RNAs was determined from bioinformatics analyses and validated by a dual-luciferase reporter gene assay. Potential target mRNAs from TargetScan 7.2 were selected for subsequent bioinformatics analysis. Key target mRNAs were further identified by screening hub genes and coexpressed protein-coding genes (CEGs) of NR2F1-AS1. NR2F1-AS1 was highly expressed in PDAC, and the overexpression of NR2F1-AS1 was associated with overall survival and disease-free survival. The knockdown of NR2F1-AS1 impaired PDAC cell proliferation, migration, invasion and tumorigenesis. NR2F1-AS1 competitively sponged miR-146a-5p and miR-877-5p, and low expression of the two miRNAs was associated with a poor prognosis. An integrative expression and survival analysis of the hub genes and CEGs demonstrated that the NR2F1-AS1-miR-146a-5p/miR-877-5p-GALNT10/ZNF532/SLC39A1/PGK1/LCO3A1/NRP2/LPCAT2/PSMA4 and CLTC ceRNA networks were linked to the prognosis of PDAC. In conclusion, NR2F1-AS1 overexpression was significantly associated with poor prognosis. NR2F1-AS1 functions as an endogenous RNA to construct a novel ceRNA network by competitively binding to miR-146a-5p/miR-877-5p, which may contribute to PDAC pathogenesis and could represent a promising diagnostic biomarker or potential novel therapeutic target in PDAC.
NR2F1-AS1在胰腺导管腺癌(PDAC)中的作用尚不清楚。因此,我们旨在研究NR2F1-AS1在PDAC中的生物学机制。通过使用微阵列数据和实时PCR来检测NR2F1-AS1的表达。研究了NR2F1-AS1敲低对增殖、细胞周期进程、侵袭和肿瘤发生的影响。通过生物信息学分析确定竞争性内源RNA的机制,并通过双荧光素酶报告基因测定进行验证。从TargetScan 7.2中选择潜在的靶mRNA用于后续的生物信息学分析。通过筛选NR2F1-AS1的枢纽基因和共表达蛋白质编码基因(CEG)进一步鉴定关键靶mRNA。NR2F1-AS1在PDAC中高表达,且NR2F1-AS1的过表达与总生存期和无病生存期相关。NR2F1-AS1的敲低损害了PDAC细胞的增殖、迁移、侵袭和肿瘤发生。NR2F1-AS1竞争性结合miR-146a-5p和miR-877-5p,这两种miRNA的低表达与不良预后相关。对枢纽基因和CEG进行综合表达和生存分析表明,NR2F1-AS1-miR-146a-5p/miR-877-5p-GALNT10/ZNF532/SLC39A1/PGK1/LCO3A1/NRP2/LPCAT2/PSMA4和CLTC ceRNA网络与PDAC的预后相关。总之,NR2F1-AS1过表达与不良预后显著相关。NR2F1-AS1作为一种内源RNA,通过竞争性结合miR-146a-5p/miR-877-5p构建了一个新的ceRNA网络,这可能有助于PDAC的发病机制,并且可能是PDAC中有前景的诊断生物标志物或潜在的新型治疗靶点。