1.Effect of microRNA-206 on the growth of prostate cancer cells by interfering with the expression of CDK4 and GAK
Geng HUANG ; Weidong JIANG ; Qing MAO ; Dingwen GUI
Journal of International Oncology 2017;44(7):485-489
Objective To investigate the effect of microRN-206 (miR-206) on the expression of Cyclin-dependent kinase 4 (CDK4) and Cyclin G-associated protein kinase (GAK), and the growth of prostate cancer cells.Methods Prostate cancer cell lines DU-145 and PC-3 were transfected with miR-NC (the control group) or miR-206 (the experimental group).The expressions of CDK4 and GAK mRNA were detected by real-time quantitative PCR (qRT-PCR).The expressions of CDK4 and GAK protein were detected by Western blotting.Cell cycle distribution was detected by flow cytometry.EdU proliferation assay and colony forming assay were used to analyze the cell proliferation ability.Results In DU-145 and PC-3 cells, the expressions of CDK4 mRNA in miR-NC group were 1.00±0.09, 1.00±0.10, the expressions of GAK mRNA were 1.00±0.05, 1.00±0.06.The expressions of CDK4 mRNA in miR-206 group were significantly decreased in DU-145 (0.36±0.18;t=6.572, P=0.001) and PC-3 cell lines (0.43±0.17;t=5.794, P=0.001).The expressions of GAK mRNA were also significantly decreased in DU-145 (0.23±0.04;t=22.420, P<0.001) and PC-3 cell lines (0.32±0.08;t=14.500, P<0.001).Western blotting results were consistent with qRT-PCR results.The results of flow cytometry showed that compared with the miR-NC group of DU-145 and PC-3 cell lines, the percentage of cells in S phase (23.60%±5.68% vs.32.53%±4.52%, t=2.462, P=0.049;22.09%±4.35% vs.30.96%±4.86%, t=2.720, P=0.035) and G2-M phase (16.28%±7.12% vs.26.63%±4.33%, t=2.484, P=0.048;14.60%±1.62% vs.24.68%±7.13%, t=2.758, P=0.033) decreased after transfection of miR-206, and the percentage of cells in G0-G1 phase (60.13%±5.82% vs.40.84%±5.37%, t=4.872, P=0.003;63.31%±3.27% vs.44.36%±3.82%, t=7.533, P<0.001) increased.The results of EdU proliferation assay showed that the proliferation abilities were significantly attenuated after transfection of miR-206 (22.56±3.81 vs.38.90±8.51, t=3.503, P=0.013;25.12±6.42 vs.48.45±8.92, t=4.244, P=0.005).The results of colony formation experiments showed that the numbers of colonies formed by DU-145 and PC-3 in miR-NC group were 218.66±44.59 and 177.35±24.49, respectively.The numbers of colonies formed in miR-206 group were 125.38±32.80 (t=3.370, P=0.015) and 82.65±14.05 (t=6.708, P=0.001), suggesting that cell proliferation ability in miR-206 group was reduced.Conclusion miR-206 significantly inhibits the growth of prostate cancer cells by interfering with the expressions of CDK4 and GAK, suggesting that miR-206 may be a molecular targeted therapy tool for prostate cancer.
2.Effect of exogenous dsRNA on expression of p21 in renal clear cell carcinoma cells
Geng HUANG ; Weidong JIANG ; Qing MAO ; Dingwen GUI
Journal of International Oncology 2017;44(7):481-484
Objective To investigate the effect of dsP21-555 transfection on the expression of tumor suppressor gene p21 in renal clear cell carcinoma cell lines ACHN and 786-O.Methods Renal clear cell carcinoma cells were transfected with dsControl and dsP21-555 with Lipofectamine 3000 respectively.Real-time quantitative PCR (RT-qPCR) and Western blotting were used to detect the expression of p21 mRNA and protein.Cell cycle distribution was detected by flow cytometry (FCM).Cell viability and proliferation were analyzed by cell viability assay (MTS method) and colony culture assay.Results In ACHN and 786-O cells, the expressions of p21 mRNA in dsP21-555 group (2.86±0.33, 1.96±0.35) were significantly higher than those in dsControl group (1.05±0.34, 1.01±0.14), which were increased to 2.72 times (t=7.640, P<0.001) and 1.95 times (t=5.058, P=0.002).Western blotting showed that the expressions of P21 protein were up-regulated in both renal cell lines, which was consistent with p21 mRNA up-regulation.The result of FCM showed that the cell cycle was blocked in G0-G1 phase (57.08%±5.66% vs.46.06%±4.60%, t=3.023, P=0.023;61.58%±6.23% vs.42.25%±6.08%, t=4.444, P=0.004) after transfection of dsP21-555 in renal clear cell carcinoma cells.MTS result showed that the vitality of both cell lines after transfection of dsP21-555 decreased compared with dsControl group, their absorbance values were 0.85±0.20 vs.1.27±0.13, t=3.410, P=0.014;1.04±0.25 vs.1.55±0.10, t=3.758, P=0.009.Colony culture experiments showed that the numbers of colonies formed by ACHN and 786-O in the dsControl group were 110.91±26.21 and 129.99±22.87 respectively, and the numbers of colonies formed in the dsP21-555 group were 59.37±14.23 (t=3.456, P=0.014) and 71.26±21.38 (t=3.745, P=0.010), indicating that the proliferation of cells in the dsP21-555 group was significantly reduced.Conclusion dsP21-555 can up-regulate the expression of p21 gene in renal clear cell carcinoma cells and inhibit the growth of carcinoma cells, suggesting that dsP21-555 may become a new gene therapy tool.
3.Expression of lncRNA ZFPM2-AS1 in bladder cancer and its effect on cell migration and proliferation
Zhihua YE ; Wei PENG ; Dingwen GUI ; Xiaoying WANG
Journal of Chinese Physician 2021;23(3):354-358
Objective:To analyze the expression of long non-coding RNA (lncRNA) ZFPM2-AS1 in bladder cancer tissues and cell lines, and to observe the effect of down-regulating ZFPM2-AS1 on the migration and proliferation of bladder cancer cells and explore its molecular mechanism.Methods:Real-time quantitative fluorescent polymerase chain reaction (qRT-PCR) was used to detect the expression of ZFPM2-AS1 in 51 pairs of bladder cancer tissues and adjacent tissues, bladder cancer cell lines (J82, 5637, BIU-87, T24) and human normal bladder epithelial cells SV-HUC-1. The bladder cancer cells with the highest ZFPM2-AS1 expression were selected and transfected with the small interfering siRNA-ZFPM2-AS1 plasmid and the negative control plasmid, respectively, and defined as the experimental group and the control group. qRT-PCR was used to detect the expression of ZFPM2-AS1 in two groups of cells. Transwell migration test and tetramethylazozole blue (MTT) method were used to detect the cell migration ability and proliferation ability of the two groups. qRT-PCR was used to detect the expression of Up-frameshift mutant 1 (UPF1) mRNA in two groups of cells. Western blot was used to detect the expression of UPF1 and mTOR signaling pathway proteins in the two groups of cells.Results:The expression of ZFPM2-AS1 in bladder cancer tissues was significantly higher than that in adjacent tissues ( P<0.01). The expression of ZFPM2-AS1 in bladder cancer cell lines was significantly higher than that in human normal bladder epithelial cells ( P<0.01), and ZFPM2-AS1 had the highest expression in BIU-87 cells ( P<0.01). Compared with the control group, the expression of ZFPM2-AS1 in BIU-87 cells in the experimental group was significantly reduced [(1.01±0.06) vs (0.16±0.04), t=12.28, P<0.01]. Compared with the control group, the migration ability of BIU-87 cells in the experimental group was decreased ( P<0.05), and the proliferation ability of BIU-87 cells was significantly decreased from the second day ( P<0.05). Compared with the control group, UPF1 mRNA expression in BIU-87 cells in the experimental group was significantly decreased [(1.00±0.02) vs (0.28±0.04), t=15.49, P<0.01]. Western blot results showed that UPF1 protein expression and mammalian rapamycin target protein (mTOR), GRB2, IRS1 and p-PI3K signal pathway protein expression were decreased in BIU-87 cells. Conclusions:ZFPM2-AS1 is highly expressed in bladder cancer tissues and cell lines. Down-regulating ZFPM2-AS1 can inhibit the migration and proliferation of BIU-87 cells. The molecular mechanism may be related to the inhibition of UPF1 gene expression.
4.Expression of miR-7850 in renal cell carcinoma and its effect on proliferation and migration of renal cell carcinoma
Fang XIE ; Geng HUANG ; Zhihua YE ; Xiaoying WANG ; Dingwen GUI
Journal of Chinese Physician 2021;23(5):668-673
Objective:To observe the expression of microRNA (miRNA, miR) -7850 in renal cancer tissues, and to explore the effect of miR-7850 on the proliferation and migration of renal cancer cells and on the regulation of serine proteinase inhibitor B3 (SERPINB3) gene expression.Methods:Real-time polymerase chain reaction (qRT-PCR) was used to detect the expression of miR-7850 in renal cancer tissues and renal cancer cell lines. The renal cell carcinoma cell line with the lowest expression of miR-7850 was selected, and the negative control sequence (miR-NC) and miR-7850 mimics were transfected into renal cell carcinoma cells by Lipofectamine 2000 transfection reagent, respectively, which were defined as miR-NC group and miR-7850 group. qRT-PCR was used to detect the expression of miR-7850 in transfected renal cancer cells. The cell proliferation and migration ability after transfection were detected by cell counting kit-8 (CCK-8) method and transwell experiment. Bioinformatics prediction and dual luciferase reporter gene experiments were used to verify the target gene of miR-7850. qRT-PCR and Western blot were used to detect the expression of target genes in renal cancer cells after transfection.Results:Compared with adjacent tissues (5.95±0.44), the expression of miR-7850 in kidney cancer tissues (1.19±0.33) was lower ( P<0.01). Compared with immortalized proximal renal tubular epithelial cells (1.01±0.07), the expression of miR-7850 was lower in renal cancer cell lines ( P<0.05), and the lowest in A498 cells (0.13±0.01) ( P<0.01). The expression of miR-7850 in the miR-7850 group (7.46±0.93) was significantly higher than that in the miR-NC group (1.01±0.08) ( P<0.01), indicating successful transfection. Compared with the miR-NC group, the cell proliferation ability of the miR-7850 group was significantly reduced ( P<0.05). The number of migrating cells in miR-NC group and miR-7850 group were (139.50±12.31) and (75.09±16.05) cells, respectively, and the cell migration ability in miR-7850 group decreased significantly ( P<0.01). Bioinformatics technology shows that the target gene of miR-7850 was SERPINB3. The dual luciferase reporter gene experiment confirmed that miR-7850 can target the SERPINB3 gene ( P<0.05). Compared with the miR-NC group, the expression of SERPINB3 in cells of miR-7850 group was significantly reduced ( P<0.05), as well as the CDK4, CyclinD, Snail and Vimentin. Conclusions:miR-7850 is lowly expressed in renal cancer tissues and cell lines. miR-7850 can inhibit the proliferation and migration of renal cancer A498 cells, which may be related to its inhibition of SERPINB3 gene expression.
5.Effect of lentivirus-mediated interference with long non-coding RNA LINC00630 expression in vitro on proliferation and migration of bladder cancer cells
Geng HUANG ; Dingwen GUI ; Xiaoying WANG ; Wei PENG ; Yunfei ZHAO ; Jinghua WAN ; Fang XIE
Cancer Research and Clinic 2021;33(4):254-258
Objective:To explore the expression of long non-coding RNA LINC00630 in bladder cancer cell lines, and to explore the effect of interference with its expression in vitro on the proliferation and migration of bladder cancer cells.Methods:Real-time fluorescent quantitative polymerase chain reaction (qRT-PCR) was used to detect the expression of LINC00630 in bladder cancer cell lines 5637, BIU-87, T24, J82 and normal bladder epithelial cell line SV-HUC-1. The bladder cancer cell line with the highest LINC00630 expression was selected for follow-up experiments, then the cell line infected with the control lentivirus was used as the control group, and the cell line infected with the lentivirus that could interfere with the expression of LINC00630 was used as the experimental group. qRT-PCR was used to detect the expression of LINC00630 in the two groups of cells. MTS method and cell scratch test were used to detect the proliferation and migration abilities of cells in the two groups. qRT-PCR was used to detect the expression of neuregulin 1 (NRG1) mRNA in the two groups of cells, and Western blot was used to detect the expressions of NRG1 protein, cell proliferation-related proteins (cyclin D3 and CDK2) and cell migration-related proteins (Vimentin and N-cadherin) in the two groups of cells.Results:Compared with SV-HUC-1 cells (1.05±0.17), the expression of LINC00630 was significantly increased in all bladder cancer cell lines (all P < 0.01), and the expression was highest in J82 cells (relative expression 5.83±0.42). Compared with J82 cells of the control group, the expression of LINC00630 in J82 cells of the experimental group decreased (0.18±0.02 vs. 1.00±0.05, t=14.36, P < 0.01); from day 2 of transfection, the cell proliferation activity of the experimental group was lower than that of the control group (all P < 0.05). The cell scratch closure rate of the experimental group was lower than that of the control group [(27.4±7.1)% vs. (66.0±5.4)%, t = 4.31, P < 0.01]. Therelative expression of NRG1 mRNA in the experimental group was lower than that in the control group (0.34±0.03 vs. 1.07±0.24, t = 2.99, P < 0.05). Compared with the control group, the expressions of NRG1 protein, cell proliferation-related proteins and cell migration-related proteins in the experimental group were reduced. Conclusions:LINC00630 is up-regulated in bladder cancer cell lines, and interference with LINC00630 may inhibit the proliferation and migration of J82 cells by down-regulating the expression of NRG1 gene. LINC00630 may be a new molecular target for the treatment of bladder cancer.
6.Comparison of the efficacy and safety of suction ureteral stent and conventional ureteral stent in the treatment of urinary calculi
Yankuang GUO ; Zhiqiang RAN ; Tianbo LI ; Geng HUANG ; Dingwen GUI
Journal of Modern Urology 2024;29(5):412-416
Objective To compare the efficacy and safety of suction ureteral stent and conventional ureteral stent in the treatment of patients with urinary calculi,so as to evaluate the clinical application value.Methods A total of 196 patients with urinary calculi admitted to in our hospital during Dec.2022 and May 2023 were selected to undergo ureteral holmium laser lithotripsy with hard ureteroscopy or soft ureteroscopy,including 100 with suction ureteral stent(suction group)and 96 with conventional ureteral stent(conventional group).Basic data,visual analog scale(VAS),extubation time,extubation success rate,gross hematuria,lumbar and abdominal pain,and urinary tract infection were compared between the two groups.Results Compared with the conventional group,the suction group had lower VAS[(2.94±1.24)vs.(5.78±1.50)],shorter extubation time[(4.28±0.51)min vs.(13.51±1.81)min],and the differences were statistically significant(P<0.01).After extubation,the suction group had a lower incidence of complications(P<0.05).Conclusion Compared with conventional ureteral stent,extraction of suction ureteral stent has the advantages of simpler operation,better patient comfort,fewer complications,shorter extubation time and lower medical costs.
7.Inhibitory effects of Calycosin on the proliferation and migration of renal cancer cell by up-regulating the expression of miRNA-1246
Geng HUANG ; Xiaoling ZHANG ; Dingwen GUI ; Xiaoying WANG ; Qing LUO
International Journal of Surgery 2024;51(6):366-371
Objective:By observing the effects of Calycosin on the proliferation and migration of human renal cancer 769-P cell, to explore the possible molecular mechanism of Calycosin against renal cancer.Methods:769-P cell were cultured with different concentrations of Calycosin [0, 12.5, 25, 50, 100, 200 μmol/L, dissolved in Dimethyl sulfoxide (DMSO)], and the effects of different concentrations of Calycosin on the viability of 769-P cell was detected by CCK8 method. The 769-P cell treated with 200 μmol/L Calycosin were used as the Calycosin group, and the 769-P cell treated with DMSO were used as the control group. The cell colony formation assay and cell scratch assay were used to detect the effects of Calycosin on the proliferation and migration of 769-P cell, respectively. Real-time fluorescence quantitative polymerase chain reaction (RT-qPCR) was used to detect the effect of Calycosin on the expression of miRNA-1246 and chemokine receptor-4 (CXCR4) in 769-P cell. Western blotting method was used to detect the effects of Calycosin on the expression of CXCR4 and extracellular signal-regulated kinase (ERK) pathway proteins in 769-P cell. Measurement data were expressed as mean ± standard deviation ( ± s), and one-way ANOVA was used for comparison between multiple groups, while t-test was used for comparison between two groups. Results:After cultured with 0, 12.5, 25, 50, 100, and 200 μmol/L of Calycosin, the absorbance values of renal cancer 769-P cell were 0.99 ± 0.06, 0.74 ± 0.07, 0.60 ± 0.03, 0.55 ± 0.05, 0.40 ± 0.06, 0.21 ± 0.04, respectively; compared with 0 μmol/L, the Calycosin could reduce the survival rate of 769-P cell ( P<0.05). The number of clones of 769-P cell in the control group and the Calycosin group was 109.80 ± 13.19 and 60.66 ± 11.22, respectively, and the number of clones of the 769-P cell in the Calycosin group was decreased, the difference was statistically significant ( t=5.67, P<0.01). The relative migration rates of 769-P cell in the control group and the Calycosin group were (43.13 ± 3.82)% and (14.27 ± 3.25)%, respectively, after the 769-P cell were treated with Calycosin, the cell migration ability was weakened ( t=5.71, P<0.05). The relative expression levels of miRNA-1246 in 769-P cell of the control group and the Calycosin group was 1.03 ± 0.12 and 6.99 ± 1.84, respectively, and the relative expression levels of CXCR4 mRNA was 7.17 ± 2.96 and 0.98 ± 0.06, respectively, showed that Calycosin can up-regulate the expression of miRNA-1246 in 769-P cell ( t=3.24, P<0.01), and down-regulate the expression of CXCR4 mRNA ( t=4.18, P<0.01). Compared with the control group, the Calycosin could down-regulate the expression of CXCR4 protein and ERK pathway protein in 769-P cell. Conclusion:Calycosin can inhibit the proliferation and migration of renal cancer 769-P cell, and its mechanism may be related to up-regulating the expression of miRNA-1246 and blocking the CXCR4/ERK pathway.
8.Long non-coding RNA BDNF-AS inhibits the proliferation and migration of renal cancer cells by regulating PI3K-AKT signaling pathway through protein tyrosine phosphatase receptor type G
Geng HUANG ; Dingwen GUI ; Wei PENG ; Zuwei XU ; Fang XIE ; Jinghua WAN
Cancer Research and Clinic 2021;33(9):657-661
Objective:To investigate the expression of long non-coding RNA (lncRNA) BDNF-AS in kidney cancer tissues, and its effect on the proliferation and migration ability of kidney cancer cells and the molecular mechanism.Methods:Real-time reverse quantitative polymerase chain reaction (rRT-PCR) was used to detect the expression levels of BDNF-AS gene in renal cancer tissues, tumor-adjacent tissues of 67 renal cancer patients and normal renal tubular epithelial cells HK-2 and renal cancer cell lines A498, ACHN, OS-RC-2, Caki-1, 786-O in Huangshi Central Hospital of Edong Medical Group from May 2017 to July 2018. The kidney cancer cell line with the lowest expression of BDNF-AS was taken as the research object. Transient transfection with BDNF-AS overexpression plasmid was treated as the experiment group or a plasmid carrying meaningless sequences was treated as the control group. rRT-PCR was used to detect transfection efficiency. After the transfection with Caki-1 for 24 h, methythiazolyl tetrazolium (MTT) method was used to detect the proliferation of cells in both groups, Transwell migration assay was applied to detect the cell migration ability, rRT-PCR was used to detect the expression level of protein tyrosine phosphatase receptor type G (PTPRG) mRNA and Western blot was used to detect the expression level of PI3K-AKT pathway related-proteins.Results:The relative expression level of BDNF-AS in kidney cancer tissues was lower than that in tumor-adjacent tissues (0.96±0.24 vs. 4.62±0.84, t = 41.76, P < 0.01). The relative expression of BDNF-AS in kidney cancer cell lines was lower than that in normal renal tubular epithelial cells HK-2 (all P < 0.05), and the relative expression in Caki-1 cells was the lowest (0.10±0.01). The relative expression of BDNF-AS in the experimental group was higher than that in the control group ( P < 0.01). From the second day of transfection, the proliferation ability of Caki-1 cells in the experimental group was lower than that in the control group (all P < 0.05). The number of Caki-1 migrated cells in the experimental group was lower than that in the control group after migration for 15 h of Caki-1 cells transfected for 24 h [(51±8) vs. (192±25), t = 5.31, P < 0.01]. After 48 h transfection, the relative expression of PTPRG mRNA in Caki-1 cells ( P < 0.01) and protein expression of the experimental group were higher than those of the control group, the expression levels of PI3K-AKT signaling pathway related-proteins p-PI3K, p-AKT, p-Tpl2 in Caki-1 cells of the experimental group were lower than those of the control group. Conclusions:The expression of BDNF-AS is down-regulated in kidney cancer tissues and cell lines. Overexpression of BDNF-AS can inhibit the proliferation and migration ability of kidney cancer Caki-1 cells. The molecular mechanism may be related to the transduction that BDNF-AS promotes PTPRG gene expression and interferes with PI3K-AKT signaling pathway.
9.Molecular mechanism of miR-1914-3p targeting ARL4C to inhibit the invasion and proliferation of renal cancer cells
Fang XIE ; Xiaoying WANG ; Dingwen GUI ; Zuwei XU ; Shuai LUO ; Geng HUANG
Journal of Chinese Physician 2021;23(9):1326-1330,1335
Objective:To explore the molecular mechanism of microRNA (miRNA, miR)-1914-3p regulating the expression of ARL4C and affecting the invasion and proliferation of renal cancer cells.Methods:Real-time fluorescent quantitative polymerase chain reaction (qRT-PCR) was used to detect the expression level of miR-1914-3p in tumor tissues and adjacent tissues of 53 renal cancer patients, 4 types of renal cancer cell lines (ACHN, OS-RC-2, 786-O, A498) and normal proximal renal tubular epithelial cell line (HK-2). The nonsense sequence (NC) and miR-1914-3p mimic were transiently transfected into renal cancer cells with the lowest miR-1914-3p expression by liposome method, namely the NC group and miR-1914-3p group. qRT-PCR was used to detect the expression level of miR-1914-3p in transfected cells. Transwell invasion test and cell counting kit-8 (CCK-8) were used to detect the invasion and proliferation ability of each group of cells. Bioinformatics software and dual luciferase gene report experiment were used to predict and test the targeted regulation mechanism of miR-1914-3p on target genes. qRT-PCR and Western blot was conducted to analyze the target gene expression level in cells of each group.Results:The expression level of miR-1914-3p in renal cancer tissue was significantly lower than that in adjacent tissues ( P<0.01). The expression level of miR-1914-3p in renal cancer cell lines was significantly lower than that in HK-2 cell lines ( P<0.01), and the expression of miR-1914-3p in OS-RC-2 cells was the lowest ( P<0.01). The expression of miR-1914-3p in the NC group and the miR-1914-3p group were (1.04±0.17) and (11.40±0.91), respectively. The expression level of miR-1914-3p in the miR-1914-3p group was significantly increased ( P<0.01), indicating that the transfection was successful. Overexpression of miR-1914-3p can significantly inhibit the invasion ( P<0.01) and proliferation ( P<0.05) of renal cancer OS-RC-2 cells. Dual luciferase gene report experiment indicated that the target gene of miR-1914-3p may be ADP-ribosylation factor-like 4C (ARL4C); miR-1914-3p can significantly inhibit the luciferase activity of wild-type ARL4C-3′UTR ( P<0.01). Overexpression of miR-1914-3p decreased the expression of ARL4C mRNA and protein in OS-RC-2 cells ( P<0.01), and decreased the expression of cell invasion phenotype proteins (Snail, Slug) and cell proliferation phenotype proteins (Mcm2, Mcm7) ( P<0.01). Conclusions:miR-1914-3p is low-expressed in renal cell carcinoma. It inhibits the invasion and proliferation of renal cell carcinoma OS-RC-2 cells through targeted interference with the expression of the oncogene ARL4C, and participates in the occurrence and development of renal cell carcinoma.
10.Effects of miR-1249-5p on proliferation, metastasis and cell cycle of prostate cancer PC-3 cell
Gang LIU ; Dingwen GUI ; Shuai LUO ; Zuwei XU ; Geng HUANG ; Tingting ZHANG
International Journal of Surgery 2023;50(6):396-400,F2
Objective:To explore the effect of miR-1249-5p on the proliferation, metastasis and cell cycle of PC-3 cell in prostate cancer.Methods:The relationship between the expression level of miR-1249-5p and the overall survival of prostate cancer patients was analyzed using OncoMir Cancer Database (OMCD). The human prostate cancer cell line PC-3 was divided into two groups: miR-1249-5p group and negative control group. Mediated by Lipofectamine 2000, miR-1249-5p mimics liposome complex or negative miRNA liposome complex were transfected into PC-3 cell at logarithmic growth stage. Real-time quantitative polymerase chain reaction (RT-qPCR) was used to detect the expression of miR-1249-5p in PC-3 cell of two groups. Colony formation assay was used to detect the changes of the proliferation ability of PC-3 cell in the two groups. Transwell experiment was used to detect the changes of PC-3 cell invasion in the two groups, and the cell cycle changes of the two groups of PC-3 were detected by flow cytometry. The miRNA prediction software miRGator was used to predict the target gene of miR-1249-5p. RT-qPCR and Western blotting were used to detect the target gene expression of miR-1249-5p. Measurement data were expressed as mean±standard deviation ( ± s), and t-test was used for comparison between two groups. Results:Compared with prostate cancer patients with low miR-1249-5p expression, prostate cancer patients with higher miR-1249-5p expression had longer overall survival, and the difference was statistically significant ( P<0.01). The expression level of miR-1249-5p in the miR-1249-5p group (10.74±1.19) was significantly higher than that of the negative control group (1.56±0.27), the difference was statistically significant ( P<0.01). The number of colonies formed in the miR-1249-5p group (35.86±6.94) was significantly less than that in the negative control group (88.94±11.66), and the difference was statistically significant ( P<0.01). The number of transmembrane cells [(25.01±6.83)/high power field of view] in the miR-1249-5p group was significantly less than that of the negative control group [(82.76±8.35)/high power field of view], and the difference was statistically significant ( P<0.01). The proportion of cells in the G 0-G 1 phase in the miR-1249-5p group [(50.79±6.61)%] was significantly higher than that in the negative control group [(27.09±2.30)%], the difference was statistically significant ( P<0.01), and PC-3 cell were inhibited in the G 0-G 1 phase. Neural precursor cell expressed developmentally down-regulated 9 ( NEDD9) may be the target gene of miR-1249-5p. Compared with the negative control group, the NEDD9 gene expression in the miR-1249-5p group was significantly lower than that of the negative control group, the difference was statistically significant ( P<0.01). Conclusion:miR-1249-5p can inhibit the proliferation, metastasis and cell cycle of PC-3 cell in prostate cancer, which may be achieved by negatively regulating the expression of proto-oncogene NEDD9.