| Literature DB >> 32117734 |
Jingsi Dong1, Bingjie Li1, Dan Lin1, Dan Lu2, Chang Liu3, Xingbing Lu4, Xiaojun Tang1, Lu Li1, Daxing Zhu1, Jiewei Liu1, Xiaoming Qiu1, Long Tian1, Qinghua Zhou1.
Abstract
Background: Lung cancer is the most common malignant tumor worldwide. Accumulating results have shown that long non-coding RNAs (lncRNAs) play a key role in tumorigenesis. Patients andEntities:
Keywords: LincRNA00494; LncRNA; SRCIN1; ceRNA; non-small cell lung cancer
Year: 2020 PMID: 32117734 PMCID: PMC7016015 DOI: 10.3389/fonc.2020.00079
Source DB: PubMed Journal: Front Oncol ISSN: 2234-943X Impact factor: 6.244
Baseline demographic and clinical characteristics of the study population.
| Age (years) | ||
| <40 | 25 | 15.3 |
| 40–60 | 85 | 52.1 |
| >60 | 53 | 32.5 |
| Sex | ||
| Male | 64 | 39.3 |
| Female | 99 | 60.7 |
| Family history of cancer | ||
| Yes | 74 | 45.4 |
| No | 89 | 54.6 |
| Smoking | ||
| Never | 114 | 69.9 |
| Ever | 49 | 30.1 |
| Pathology of nsclc | ||
| Adenocarcinoma | 117 | 71.8 |
| Squamous | 46 | 28.2 |
| Differentiation | ||
| Good | 47 | 28.8 |
| Intermediate | 85 | 52.1 |
| Poor | 31 | 19.0 |
| Stage | ||
| I | 42 | 25.8 |
| II | 69 | 42.3 |
| III | 52 | 31.9 |
Figure 1Cellular and molecular characterization of LincRNA00494. (A) The levels of the nuclear control transcript (U6), the cytoplasmic control transcript (GAPDH mRNA) and LincRNA00494 were assessed by RT-qPCR. Data are shown as the mean ± SEM. (B) A northern blot shows that LincRNA00494 is 10 kb. (C) The linear correlations between the LincRNA00494 expression and the SRCIN1 mRNA levels were tested. The relative expression value was normalized to the GAPDH expression level. (D,E) LincRNA00494 expression significantly affected SRCIN1 mRNA expression. Knockdown of LincRNA00494 decreased the SRCIN1 expression, while ectopic expression of LincRNA00494 increased the SRCIN1 mRNA levels. (F) LincRNA00494 was expressed at a lower level in the NSCLC tissues than in the matched tumor-adjacent tissues. The expression level of LincRNA00494 was analyzed by RT-qPCR and normalized to the GAPDH level. Data are represented as the mean ± SEM from three independent experiments. (G) The protein levels of SRCIN1 were assessed by Western blots of H358 cells and H1299 cells.
Figure 2The relationships among miR-150-3p, LincRNA00494 and SRCIN1. (A) Both LincRNA00494 and SRCIN1 are targeted by miR-150-3p. miR-150-3p significantly decreased the luciferase signals of both LincRNA00494 and SRCIN1. (B) The SRCIN1 and LincRNA00494 levels were significantly decreased. Data are shown as the mean ± SEM (normalized to GAPDH). (C) The negative correlations between the LincRNA00494 expression levels and the SRCIN1 mRNA levels were tested. (D) The reporter vector was cotransfected into the NSCLC cells with LincRNA00494 siRNA or control siRNA. The luciferase signal was substantially decreased.
Figure 3LincRNA00494 mediated proliferation of the NSCLC cells. (A) FISH showed that LincRNA00494 was mostly located in the cytoplasm, with a small portion in the nucleus. Green indicates vimentin; red indicates LincRNA00494. (B) Cells were harvested, and the RNA stability of LincRNA00494 was analyzed by RT-qPCR relative to time 0 after new RNA synthesis was blocked with actinomycin D; the data are shown as the mean ± SEM (normalized to GAPDH). (C) H358 and H1299 cells were seeded in 96-well plates after transfection, and the cell proliferation was assessed daily for 5 days using the CCK-8 assay. Six replicates were performed for each group, and the experiment was repeated three times. Data are shown as the mean ± SEM. (D,E) The data show the tumor volumes of the xenografts in each group 4 weeks after subcutaneously implantation of stable NSCLC cells. The mean tumor volumes from six nude mice from each group are shown at different time points.