| Literature DB >> 29103082 |
Guang-Li Sun1, Zheng Li1, Wei-Zhi Wang1, Zheng Chen2, Lei Zhang1, Qing Li1, Song Wei1, Bo-Wen Li1, Jiang-Hao Xu1, Liang Chen1, Zhong-Yuan He1, Kai Ying1, Xuan Zhang1, Hao Xu1, Dian-Cai Zhang1, Ze-Kuan Xu3.
Abstract
BACKGROUND: Emerging evidence suggested that miRNAs can function as oncogenes or tumor suppressors by regulating downstream target genes. miR-324-3p has been reported to function in several carcinomas, but its role in gastric cancer (GC) is still unknown. This study aims to explore the effects of miR-324-3p on the development of GC.Entities:
Keywords: Gastric cancer; Organoid; Smad4; Wnt; miR-324-3p
Mesh:
Substances:
Year: 2017 PMID: 29103082 PMCID: PMC5971041 DOI: 10.1007/s00535-017-1408-0
Source DB: PubMed Journal: J Gastroenterol ISSN: 0944-1174 Impact factor: 7.527
Fig. 1Expression of miR-324-3p in GC tissues, cell lines, and transfected GC cells. a miR-324-3p expression was detected in 68 pairs of GC and adjacent normal tissues by qRT-PCR. b The expression of miR-324-3p in GC cell lines and GES-1 cell line. c, d miR-324-3p expression level in GC cell lines transfected with lentivirus miR-324-3p mimics and miR-324-3p inhibitor. e, f Proliferation rate of transfected GC cells was determined by CCK-8 assay
Expression of miR-324-3p in human gastric cancer and the clinicopathological characteristics of the patients
| Characteristics | Number (%) | miR-324-3p expression |
| Smad4 expression |
| ||
|---|---|---|---|---|---|---|---|
| High group | Low group | High group | Low group | ||||
| Age (years) | |||||||
| ≥ 60 | 43 (63.2%) | 23 | 20 | 0.451 | 21 | 22 | 0.801 |
| < 60 | 25 (36.8%) | 11 | 14 | 13 | 12 | ||
| Gender | |||||||
| Male | 37 (54.4%) | 18 | 19 | 0.808 | 20 | 17 | 0.465 |
| Female | 31 (45.6%) | 16 | 15 | 14 | 17 | ||
| Size (cm) | |||||||
| ≥ 3 (cm) | 36 (52.9%) | 23 | 13 | 0.015* | 12 | 24 | 0.004* |
| < 3 (cm) | 32 (47.1%) | 11 | 21 | 22 | 10 | ||
| Stages | |||||||
| I/II | 30 (44.1%) | 14 | 16 | 0.625 | 18 | 12 | 0.143 |
| III/IV | 38 (55.9%) | 20 | 18 | 16 | 22 | ||
| T grade | |||||||
| T1 + T2 | 38 (55.9%) | 17 | 21 | 0.329 | 20 | 18 | 0.625 |
| T3 + T4 | 30 (44.1%) | 17 | 13 | 14 | 16 | ||
| Lymph node metastasis | |||||||
| N1–N3 | 40 (58.8%) | 22 | 18 | 0.324 | 17 | 23 | 0.139 |
| N0 | 28 (41.1%) | 12 | 16 | 17 | 11 | ||
| Lauren classification | |||||||
| Intestinal type | 30 (44.1%) | 12 | 18 | 0.330 | 19 | 11 | 0.094 |
| Diffuse type | 27 (39.7%) | 16 | 11 | 12 | 15 | ||
| Mixed type | 11 (16.2%) | 6 | 5 | 3 | 8 | ||
*P < 0.05 statistically significant difference
Fig. 2miR-324-3p promoted cell proliferation and inhibited cell apoptosis. a miR-324-3p could promote cell proliferation by colony formation assay. b The effect of miR-324-3p on cell apoptosis by flow cytometric analysis. c miR-324-3p improved cell migration by transwell migration assay. d Cell vitality detected by CCK-8 assay on GC cells transfected with miR-324-3p mimics or miR-324-3p inhibitor lentivirus
Fig. 3Smad4 was a direct target of miR-324-3p. a The predicted binding site of miR-324-3p at the 3′UTR of Smad4 by Targetscan. b Effect of miR-324-3p on the expression level of Smad4 by western blot. c Luciferase activity analyzed with MGC-803 cells co-transfected with mimics or NC and pGL3-Smad4 or pGL3-Smad4-mut. d Luciferase activity analyzed with BGC-823 cells co-transfected with inhibitor or NC and pGL3-Smad4 or pGL3-Smad4-mut. e Expression level of Smad4 in 68 pairs of GC tissues and adjacent normal tissues was detected by qRT-PCR. f There was a negative correlation between the expression level of miR-324-3p and Smad4 in 68 pairs of GC tissues
Fig. 4Overexpression of Smad4 could reverse the effect of miR-324-3p on GC cells. a Smad4 protein level was detected by western blot. b Smad4 could reverse the effect of miR-324-3p on cell proliferation. c Smad4 could reverse the effect of miR-324-3p on cell vitality. d Restoration of Smad4 inhibited colony formation. e Flow cytometric assay was performed to verify that Smad4 could reverse the effect of miR-324-3p on cell apoptosis. f Transwell migration assay demonstrated that cell migration ability was restrained by overexpression of Smad4
Fig. 5miR-324-3p promoted growth of GC cells in vivo. a, b Nude mice injected subcutaneously with transfected GC cells were killed and the tumors of the mimics group had a larger volume. c, d Tumors of inhibitor group had smaller volume than the NC group. e The results of ki-67 staining assay showed that miR-324-3p promoted proliferation of GC cells in nude mice. f Overexpression of miR-324-3p could inhibit cell apoptosis while knockdown of miR-324-3p promoted cell apoptosis in vivo by TUNEL assay. g, h Smad4 expression had a negative correlation with miR-324-3p in vivo by immunohistochemistry staining and western blot
Fig. 6miR-324-3p promoted the growth of gastric organoids and activated the Wnt/beta-catenin signaling pathway via downregulation of Smad4. a Photo of gastric organoids we constructed. b HE staining of gastric organoids. c The expression of miR-324-3p in gastric organoids was upregulated by miR-324-3p mimics lentivirus. d miR-324-3p could increase the size of gastric organoids. e The results of ki-67 staining showed that miR-324-3p had a positive effect on growth of gastric organoids. f The results of TOPflash/FOPflash showed that the Wnt/beta-catenin signaling pathway was activated by overexpression of miR-324-3p and knockdown of miR-324-3p inhibited the Wnt/beta-catenin signaling pathway. g Overexpression of miR-324-3p increased the protein expression level of beta-catenin and Wnt-dependent cyclin D1, CD44, c-Met, c-Jun, and TCF-1 while inhibition of miR-324-3p had the opposite effect. h Overexpression of Smad4 downregulated the expression level of beta-catenin, cyclin D1, CD44, c-Met, c-Jun, and TCF-1. i Knockdown of miR-324-3p reduced intracellular ATP level in the BGC-823 cell line. miR-324-3p increased intracellular ATP level in the MGC-803 cell line and Smad4 could reverse the effect of miR-324-3p on intracellular ATP level. j The intracellular ATP levels of GC cells under hypoxic conditions