| Literature DB >> 32943928 |
Dingxue Wang1, Xiaoqing Cao2, Yi Han2, Daping Yu2.
Abstract
BACKGROUND: LncRNA SNHG9 has been shown to be an oncogenic lncRNA in glioblastoma, while its role in other cancers is unknown. The aim of this study was to investigate the role of SNHG9 in non-small cell lung cancer (NSCLC).Entities:
Keywords: SNHG9; methylation; miR-21; non-small cell lung cancer
Year: 2020 PMID: 32943928 PMCID: PMC7473986 DOI: 10.2147/CMAR.S253052
Source DB: PubMed Journal: Cancer Manag Res ISSN: 1179-1322 Impact factor: 3.989
Figure 1The expression levels of SNHG9 were decreased in NSCLC but the expression levels of miR-21 were elevated in NSCLC. Expressions of SNHG9 (A) and miR-21 (B) in paired tumor tissues and non-tumor tissues from 64 NSCLC patients were analyzed by performing RT-qPCR. PCRs were performed in triplicate and mean values were presented and compared. ***p < 0.001.
Figure 2MiR-21 were inversely correlated with SNHG9 in NSCLC and could interact with SNHG9. Correlations between the expression levels of miR-21 and SNHG9 across NSCLC tissues (A) and non-tumor tissues (B) were analyzed by linear regression. An inverse correlation between miR-21 and SNHG9 was observed in NSCLC tumor samples but not in non-tumor tissues. The interaction between SNHG9 and miR-21 was predicted by bioinformatic analyses (C). RNA pull-down was applied to detect the interaction between miR-21 and SNHG9. SNHG9 could only be amplified in the pellet precipitated by miR-21 probe but not control probe (D), indicating that miR-21 directly interacts with lncRNA SNHG9 in NSCLC cell lines. ***p < 0.001.
Figure 3Overexpression of SNHG9 downregulated miR-21 through methylation. H1581 and H1993 cells were transfected with either SNHG9 expression vector or miR-21 mimic to explore the relationship between SNHG9 and miR-21. Overexpression of SNHG9 and miR-21 was confirmed by RT-qPCR (A). The effects overexpression of SNHG9 on miR-21 (B) and the effects of overexpression of miR-21 on SNHG9 were also explored by RT-qPCR (C). MSP was performed to analyze the effects of overexpression of SNHG9 on the methylation of miR-21 gene (D). Experiments were repeated 3 times and mean ± SD values were presented and compared. M, methylation; U, un-methylation. *p < 0.05.
Figure 4SNHG9 suppressed NSCLC cell proliferation through regulating miR-21. The role of SNHG9 and miR-21 in regulating NSCLC cell proliferation was analyzed by cell proliferation assay. Experiments were repeated 3 times and mean ± SD values were presented and compared. *p < 0.05.