miRNA | gene name | experiments | ||||||||||||||
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hsa-miR-182-5p | FOXO3 |
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hsa-miR-182-5p | FOXO1 |
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hsa-miR-182-5p | RARG |
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hsa-miR-182-5p | MITF |
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hsa-miR-182-5p | ADCY6 |
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hsa-miR-182-5p | EP300 |
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hsa-miR-182-5p | CLOCK |
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hsa-miR-182-5p | TSC22D3 |
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hsa-miR-182-5p | CREB1 |
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hsa-miR-182-5p | MTSS1 |
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hsa-miR-182-5p | FGF9 |
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hsa-miR-182-5p | NTM |
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hsa-miR-182-5p | CYLD |
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hsa-miR-182-5p | BCL2 |
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hsa-miR-182-5p | CCND2 |
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hsa-miR-182-5p | PDCD4 |
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hsa-miR-182-5p | PFN1 |
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hsa-miR-182-5p | SNAI2 |
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hsa-miR-182-5p | RECK |
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hsa-miR-182-5p | SMAD4 |
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hsa-miR-182-5p | FOXF2 |
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hsa-miR-182-5p | IGF1R |
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hsa-miR-182-5p | CISD2 |
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hsa-miR-182-5p | BRIP1 |
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hsa-miR-182-5p | RBM12 |
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hsa-miR-182-5p | CBX6 |
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hsa-miR-182-5p | FMNL3 |
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hsa-miR-182-5p | RPL5 |
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hsa-miR-182-5p | RCC2 |
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hsa-miR-182-5p | GNL1 |
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hsa-miR-182-5p | SNRPA1 |
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hsa-miR-182-5p | C1orf174 |
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hsa-miR-182-5p | RLF |
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hsa-miR-182-5p | CASC3 |
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hsa-miR-182-5p | FLOT1 |
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hsa-miR-182-5p | BAG1 |
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hsa-miR-182-5p | RBM15B |
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hsa-miR-182-5p | LSM14A |
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hsa-miR-182-5p | RPS4X |
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hsa-miR-182-5p | UBA1 |
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hsa-miR-182-5p | RPS3 |
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hsa-miR-182-5p | CENPS |
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hsa-miR-182-5p | TMEM184C |
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hsa-miR-182-5p | ETV3 |
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hsa-miR-182-5p | SEC61A2 |
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hsa-miR-182-5p | UBP1 |
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hsa-miR-182-5p | USP16 |
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hsa-miR-182-5p | ACVR1B |
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hsa-miR-182-5p | STAG2 |
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hsa-miR-182-5p | RAB3IP |
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hsa-miR-182-5p | ATP5O |
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hsa-miR-182-5p | SLC25A14 |
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hsa-miR-182-5p | TTC28 |
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hsa-miR-182-5p | NUFIP2 |
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hsa-miR-182-5p | TNKS1BP1 |
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hsa-miR-182-5p | ACTN4 |
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hsa-miR-182-5p | TUBA1B |
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hsa-miR-182-5p | EVI5 |
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hsa-miR-182-5p | VPS51 |
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hsa-miR-182-5p | ANO6 |
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hsa-miR-182-5p | PCOLCE2 |
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hsa-miR-182-5p | LBR |
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hsa-miR-182-5p | PIK3C2A |
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hsa-miR-182-5p | ERO1A |
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hsa-miR-182-5p | PRKAA2 |
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hsa-miR-182-5p | ATP13A3 |
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hsa-miR-182-5p | PTEN |
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hsa-miR-182-5p | GSK3B |
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hsa-miR-182-5p | ZFAND4 |
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hsa-miR-182-5p | BDNF |
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hsa-miR-182-5p | SATB2 |
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hsa-miR-182-5p | CHL1 |
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hsa-miR-182-5p | CADM1 |
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hsa-miR-182-5p | TP53INP1 |
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hsa-miR-182-5p | NOTCH2 |
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hsa-miR-182-5p | BRWD1 |
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hsa-miR-182-5p | QSER1 |
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hsa-miR-182-5p | NUP50 |
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hsa-miR-182-5p | ATF1 |
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hsa-miR-182-5p | BARD1 |
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hsa-miR-182-5p | CREB5 |
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hsa-miR-182-5p | RAD17 |
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hsa-miR-182-5p | TP53BP1 |
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hsa-miR-182-5p | CHEK2 |
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hsa-miR-182-5p | CDKN1B |
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hsa-miR-182-5p | SMARCD3 |
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hsa-miR-182-5p | TCEAL7 |
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hsa-miR-182-5p | FBXW7 |
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hsa-miR-182-5p | LRRC4 |
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hsa-miR-182-5p | NDRG1 |
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hsa-miR-182-5p | THBS1 |
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hsa-miR-182-5p | ULBP2 |
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hsa-miR-182-5p | CTNNA3 |
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hsa-miR-182-5p | RASA2 |
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hsa-miR-182-5p | GPR156 |
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hsa-miR-182-5p | PITPNM3 |
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hsa-miR-182-5p | STOML3 |
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hsa-miR-182-5p | SIN3B |
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hsa-miR-182-5p | SERPINH1 |
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hsa-miR-182-5p | PPP1R11 |
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hsa-miR-182-5p | KLHL28 |
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hsa-miR-182-5p | ATXN1L |
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hsa-miR-182-5p | CCL22 |
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hsa-miR-182-5p | MBD4 |
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hsa-miR-182-5p | CASTOR2 |
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hsa-miR-182-5p | ACER2 |
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hsa-miR-182-5p | RPL7L1 |
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hsa-miR-182-5p | SESN2 |
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hsa-miR-182-5p | RPS23 |
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hsa-miR-182-5p | SYNM |
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hsa-miR-182-5p | MALT1 |
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hsa-miR-182-5p | UBE2D4 |
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hsa-miR-182-5p | TRIM71 |
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hsa-miR-182-5p | TNRC6A |
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hsa-miR-182-5p | PODXL |
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hsa-miR-182-5p | MORF4L1 |
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hsa-miR-182-5p | ECHDC1 |
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hsa-miR-182-5p | INCENP |
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hsa-miR-182-5p | SYDE2 |
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hsa-miR-182-5p | PPP1R12A |
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hsa-miR-182-5p | PNISR |
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hsa-miR-182-5p | NUP43 |
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hsa-miR-182-5p | MAP3K3 |
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hsa-miR-182-5p | HOXA9 |
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hsa-miR-182-5p | CRAMP1 |
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hsa-miR-182-5p | MIGA1 |
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hsa-miR-182-5p | DDAH1 |
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hsa-miR-182-5p | CITED2 |
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hsa-miR-182-5p | TNFRSF10A |
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hsa-miR-182-5p | TMEM170B |
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hsa-miR-182-5p | SYNGR2 |
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hsa-miR-182-5p | TUBD1 |
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hsa-miR-182-5p | LZIC |
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hsa-miR-182-5p | PLEKHA8 |
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hsa-miR-182-5p | GID4 |
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hsa-miR-182-5p | NPTX1 |
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hsa-miR-182-5p | GABRB1 |
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hsa-miR-182-5p | SLC11A1 |
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hsa-miR-182-5p | STK17B |
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hsa-miR-182-5p | CPE |
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hsa-miR-182-5p | IPP |
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hsa-miR-182-5p | ANKRD36 |
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hsa-miR-182-5p | ZNF831 |
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hsa-miR-182-5p | TRAPPC3L |
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hsa-miR-182-5p | PPM1L |
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hsa-miR-182-5p | KDM5A |
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hsa-miR-182-5p | EIF4EBP2 |
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hsa-miR-182-5p | GK5 |
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hsa-miR-182-5p | EXOSC2 |
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hsa-miR-182-5p | NR3C1 |
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hsa-miR-182-5p | ZNF185 |
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hsa-miR-182-5p | ZFAND1 |
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hsa-miR-182-5p | USP5 |
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hsa-miR-182-5p | FAM193A |
|
authors | journal | year | Pubmed link | title | |
---|---|---|---|---|---|
1 | Segura et al. | Proc. Natl. Acad. Sci. U.S.A. | 2009 | 19188590 | Aberrant miR-182 expression promotes melanoma metastasis by repressing FOXO3 and microphthalmia-associated transcription factor. |
2 | Xu et al. | Int. J. Biochem. Cell Biol. | 2013 | 23262295 | The upregulation of signal transducer and activator of transcription 5-dependent microRNA-182 and microRNA-96 promotes ovarian cancer cell proliferation by targeting forkhead box O3 upon leptin stimulation. |
3 | Guttilla et al. | J. Biol. Chem. | 2009 | 19574223 | Coordinate regulation of FOXO1 by miR-27a, miR-96, and miR-182 in breast cancer cells. |
4 | Li et al. | Int. J. Oncol. | 2014 | 24865442 | Differential expression of miRNAs in colon cancer between African and Caucasian Americans: implications for cancer racial health disparities. |
5 | Lipchina et al. | Genes Dev. | 2011 | 22012620 | Genome-wide identification of microRNA targets in human ES cells reveals a role for miR-302 in modulating BMP response. |
6 | Li et al. | Mech. Ageing Dev. | 2009 | 19782699 | Alterations in microRNA expression in stress-induced cellular senescence. |
7 | Yan et al. | PLoS ONE | 2012 | 22848417 | Role of microRNA-182 in posterior uveal melanoma: regulation of tumor development through MITF, BCL2 and cyclin D2. |
8 | Xu et al. | J. Biol. Chem. | 2007 | 17597072 | MicroRNA (miRNA) transcriptome of mouse retina and identification of a sensory organ-specific miRNA cluster. |
9 | Saus et al. | Hum. Mol. Genet. | 2010 | 20656788 | Genetic variants and abnormal processing of pre-miR-182, a circadian clock modulator, in major depression patients with late insomnia. |
10 | Mees et al. | Int. J. Cancer | 2010 | 19569050 | EP300--a miRNA-regulated metastasis suppressor gene in ductal adenocarcinomas of the pancreas. |
11 | Kong et al. | FEBS J. | 2012 | 22325466 | MicroRNA-182 targets cAMP-responsive element-binding protein 1 and suppresses cell growth in human gastric adenocarcinoma. |
12 | Liu et al. | J. Pathol. | 2012 | 22322863 | MiR-182 overexpression in tumourigenesis of high-grade serous ovarian carcinoma. |
13 | Wang et al. | BMC Cancer | 2012 | 22681717 | MicroRNA-182 downregulates metastasis suppressor 1 and contributes to metastasis of hepatocellular carcinoma. |
14 | Hirata et al. | PLoS ONE | 2013 | 23383207 | MicroRNA-182-5p promotes cell invasion and proliferation by down regulating FOXF2, RECK and MTSS1 genes in human prostate cancer. |
15 | Lei et al. | Oncogene | 2014 | 23474751 | Suppression of MIM by microRNA-182 activates RhoA and promotes breast cancer metastasis. |
16 | Yu et al. | Nucleic Acids Res. | 2012 | 22917588 | miR-182 inhibits Schwann cell proliferation and migration by targeting FGF9 and NTM, respectively at an early stage following sciatic nerve injury. |
17 | Song et al. | J. Clin. Invest. | 2012 | 23006329 | TGF-β induces miR-182 to sustain NF-κB activation in glioma subsets. |
18 | Peng et al. | PLoS ONE | 2013 | 23936432 | Inhibition of proliferation and induction of autophagy by atorvastatin in PC3 prostate cancer cells correlate with downregulation of Bcl2 and upregulation of miR-182 and p21. |
19 | Wang et al. | J. Cell. Biochem. | 2013 | 23296900 | MicroRNA-182 promotes cell growth, invasion, and chemoresistance by targeting programmed cell death 4 (PDCD4) in human ovarian carcinomas. |
20 | Wang et al. | Tumour Biol. | 2014 | 23877371 | Downregulation of microRNA-182 inhibits cell growth and invasion by targeting programmed cell death 4 in human lung adenocarcinoma cells. |
21 | Liu et al. | Tumour Biol. | 2013 | 23430586 | Expression and regulatory function of miRNA-182 in triple-negative breast cancer cells through its targeting of profilin 1. |
22 | Farazi et al. | Genome Biol. | 2014 | 24398324 | Identification of distinct miRNA target regulation between breast cancer molecular subtypes using AGO2-PAR-CLIP and patient datasets. |
23 | Memczak et al. | Nature | 2013 | 23446348 | Circular RNAs are a large class of animal RNAs with regulatory potency. |
24 | Kishore et al. | Nat. Methods | 2011 | 21572407 | A quantitative analysis of CLIP methods for identifying binding sites of RNA-binding proteins. |
25 | Qu et al. | Int. J. Cancer | 2013 | 23354685 | MiR-182 and miR-203 induce mesenchymal to epithelial transition and self-sufficiency of growth signals via repressing SNAI2 in prostate cells. |
26 | Chiang et al. | Biochim. Biophys. Acta | 2013 | 23333633 | Up-regulation of miR-182 by β-catenin in breast cancer increases tumorigenicity and invasiveness by targeting the matrix metalloproteinase inhibitor RECK. |
27 | Hirata et al. | PLoS ONE | 2012 | 23226455 | Oncogenic miRNA-182-5p targets Smad4 and RECK in human bladder cancer. |
28 | Helwak et al. | Cell | 2013 | 23622248 | Mapping the human miRNA interactome by CLASH reveals frequent noncanonical binding. |
29 | Xu et al. | Mol. Cancer | 2014 | 24886554 | Downregulation of microRNA-182-5p contributes to renal cell carcinoma proliferation via activating the AKT/FOXO3a signaling pathway. |
30 | Li et al. | Biotechnol. Lett. | 2014 | 24867318 | Inflammation-induced miR-802 promotes cell proliferation in cholesteatoma. |
31 | Tang et al. | Nucleic Acids Res. | 2014 | 24335145 | Glycogen synthase kinase 3 beta inhibits microRNA-183-96-182 cluster via the β-Catenin/TCF/LEF-1 pathway in gastric cancer cells. |
32 | Tang et al. | Oncol. Rep. | 2015 | 25682742 | MicroRNA-182 inhibits proliferation through targeting oncogenic ANUBL1 in gastric cancer. |
33 | Li et al. | PLoS ONE | 2013 | 23704927 | Alterations of serum levels of BDNF-related miRNAs in patients with depression. |
34 | Yang et al. | J Transl Med | 2014 | 24884732 | microRNA-182 targets special AT-rich sequence-binding protein 2 to promote colorectal cancer proliferation and metastasis. |
35 | Zhu et al. | Biochem. Biophys. Res. Commun. | 2014 | 24971532 | miR-182 targets CHL1 and controls tumor growth and invasion in papillary thyroid carcinoma. |
36 | Qiu et al. | Mol Biosyst | 2014 | 24445397 | TGF-β upregulates miR-182 expression to promote gallbladder cancer metastasis by targeting CADM1. |
37 | Qin et al. | Gene | 2014 | 24447717 | Upregulated miR-182 increases drug resistance in cisplatin-treated HCC cell by regulating TP53INP1. |
38 | Karginov et al. | Genes Dev. | 2013 | 23824327 | Remodeling of Ago2-mRNA interactions upon cellular stress reflects miRNA complementarity and correlates with altered translation rates. |
39 | Xue et al. | Cell | 2013 | 23313552 | Direct conversion of fibroblasts to neurons by reprogramming PTB-regulated microRNA circuits. |
40 | Hafner et al. | Cell | 2010 | 20371350 | Transcriptome-wide identification of RNA-binding protein and microRNA target sites by PAR-CLIP. |
41 | Krishnan et al. | RNA | 2013 | 23249749 | MicroRNA-182-5p targets a network of genes involved in DNA repair. |
42 | Guo et al. | Cell. Physiol. Biochem. | 2013 | 24021963 | MicroRNA-182 promotes tumor cell growth by targeting transcription elongation factor A-like 7 in endometrial carcinoma. |
43 | Li et al. | J. Pathol. | 2014 | 25269767 | Sequential expression of miR-182 and miR-503 cooperatively targets FBXW7, contributing to the malignant transformation of colon adenoma to adenocarcinoma. |
44 | Tang et al. | PLoS ONE | 2014 | 24404152 | Disturbing miR-182 and -381 inhibits BRD7 transcription and glioma growth by directly targeting LRRC4. |
45 | Liu et al. | PLoS ONE | 2013 | 23874837 | Overexpressed microRNA-182 promotes proliferation and invasion in prostate cancer PC-3 cells by down-regulating N-myc downstream regulated gene 1 (NDRG1). |
46 | Amodeo et al. | Expert Opin. Ther. Targets | 2013 | 24053448 | Effects of anti-miR-182 on TSP-1 expression in human colon cancer cells: there is a sense in antisense? |
47 | Zhang et al. | Cell Biol. Int. | 2013 | 23956116 | A novel recombinant Salmonella vaccine enhances the innate immunity of NK cells against acute myeloid leukaemia cells Kasumi-1 in vitro. |
48 | Gottwein et al. | Cell Host Microbe | 2011 | 22100165 | Viral microRNA targetome of KSHV-infected primary effusion lymphoma cell lines. |
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