miRNA | gene name | experiments | ||||||||||
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hsa-miR-217 | SIRT1 |
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hsa-miR-217 | ROBO1 |
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hsa-miR-217 | PTEN |
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hsa-miR-217 | NR4A2 |
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hsa-miR-217 | PPM1D |
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hsa-miR-217 | FHIT |
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hsa-miR-217 | KRAS |
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hsa-miR-217 | SMAD7 |
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hsa-miR-217 | E2F3 |
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hsa-miR-217 | DACH1 |
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hsa-miR-217 | MAP1B |
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hsa-miR-217 | TP53INP1 |
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hsa-miR-217 | LMLN |
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hsa-miR-217 | FLVCR1 |
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hsa-miR-217 | ZNF268 |
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hsa-miR-217 | FOXO3 |
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hsa-miR-217 | GHITM |
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hsa-miR-217 | ZNF317 |
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hsa-miR-217 | GPC5 |
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hsa-miR-217 | ZNF583 |
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hsa-miR-217 | SRSF11 |
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hsa-miR-217 | SNRNP27 |
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hsa-miR-217 | ACBD3 |
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hsa-miR-217 | TMEM67 |
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hsa-miR-217 | HSPA4L |
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hsa-miR-217 | TCF7L2 |
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hsa-miR-217 | SFTPB |
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hsa-miR-217 | OSBPL3 |
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hsa-miR-217 | RAB11B |
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hsa-miR-217 | HOXA13 |
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hsa-miR-217 | TMSB4X |
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hsa-miR-217 | TAF1D |
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hsa-miR-217 | ADSS |
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hsa-miR-217 | TNFRSF21 |
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hsa-miR-217 | HIF1A |
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hsa-miR-217 | TMEM63A |
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hsa-miR-217 | PNRC2 |
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hsa-miR-217 | CREBZF |
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hsa-miR-217 | MARCH5 |
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hsa-miR-217 | DNAL1 |
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hsa-miR-217 | BACH2 |
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hsa-miR-217 | UBXN11 |
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hsa-miR-217 | CKAP4 |
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hsa-miR-217 | STK40 |
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hsa-miR-217 | ZBTB20 |
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hsa-miR-217 | NHLRC2 |
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hsa-miR-217 | TCERG1 |
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hsa-miR-217 | VPS8 |
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hsa-miR-217 | TACO1 |
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hsa-miR-217 | CA6 |
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hsa-miR-217 | LACTB |
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hsa-miR-217 | MXD1 |
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hsa-miR-217 | MMGT1 |
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hsa-miR-217 | CDC73 |
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hsa-miR-217 | BTG1 |
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hsa-miR-217 | FAM196B |
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hsa-miR-217 | WDR82P1 |
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hsa-miR-217 | SLC4A2 |
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hsa-miR-217 | ZNF490 |
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hsa-miR-217 | LSG1 |
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hsa-miR-217 | ELF5 |
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hsa-miR-217 | HINFP |
|
authors | journal | year | Pubmed link | title | |
---|---|---|---|---|---|
1 | Deng et al. | Cancer Lett. | 2014 | 25172416 | Chronic pancreatitis and pancreatic cancer demonstrate active epithelial-mesenchymal transition profile, regulated by miR-217-SIRT1 pathway. |
2 | Menghini et al. | Circulation | 2009 | 19786632 | MicroRNA 217 modulates endothelial cell senescence via silent information regulator 1. |
3 | Tie et al. | PLoS Genet. | 2010 | 20300657 | MiR-218 inhibits invasion and metastasis of gastric cancer by targeting the Robo1 receptor. |
4 | Inui et al. | Nat. Rev. Mol. Cell Biol. | 2010 | 20216554 | MicroRNA control of signal transduction. |
5 | Xia et al. | Hepatology | 2013 | 23471579 | MicroRNA-216a/217-induced epithelial-mesenchymal transition targets PTEN and SMAD7 to promote drug resistance and recurrence of liver cancer. |
6 | Tsai et al. | J. Cell. Biochem. | 2010 | 19885849 | Identification of microRNAs regulated by activin A in human embryonic stem cells. |
7 | Zhang et al. | Cancer Res. | 2010 | 20668064 | Oncogenic Wip1 phosphatase is inhibited by miR-16 in the DNA damage signaling pathway. |
8 | Lin et al. | Cancer Biother. Radiopharm. | 2011 | 21711110 | microRNA-143 protects cells from DNA damage-induced killing by downregulating FHIT expression. |
9 | Zhao et al. | Carcinogenesis | 2010 | 20675343 | The miR-217 microRNA functions as a potential tumor suppressor in pancreatic ductal adenocarcinoma by targeting KRAS. |
10 | Su et al. | Mol. Cell. Biochem. | 2014 | 24671492 | miR-217 inhibits invasion of hepatocellular carcinoma cells through direct suppression of E2F3. |
11 | Zhang et al. | J Cancer | 2015 | 25653720 | MiR-217 Promotes Tumor Proliferation in Breast Cancer via Targeting DACH1. |
12 | Hafner et al. | Cell | 2010 | 20371350 | Transcriptome-wide identification of RNA-binding protein and microRNA target sites by PAR-CLIP. |
13 | 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. |
14 | Memczak et al. | Nature | 2013 | 23446348 | Circular RNAs are a large class of animal RNAs with regulatory potency. |
15 | Zhang et al. | PLoS ONE | 2013 | 24376725 | MicroRNA-217 promotes angiogenesis of human cytomegalovirus-infected endothelial cells through downregulation of SIRT1 and FOXO3A. |
16 | Whisnant et al. | MBio | 2013 | 23592263 | In-depth analysis of the interaction of HIV-1 with cellular microRNA biogenesis and effector mechanisms. |
17 | Wang et al. | PLoS ONE | 2015 | 26098560 | The MicroRNA-217 Functions as a Potential Tumor Suppressor in Gastric Cancer by Targeting GPC5. |
18 | Gottwein et al. | Cell Host Microbe | 2011 | 22100165 | Viral microRNA targetome of KSHV-infected primary effusion lymphoma cell lines. |
19 | Skalsky et al. | PLoS Pathog. | 2012 | 22291592 | The viral and cellular microRNA targetome in lymphoblastoid cell lines. |
20 | Kishore et al. | Nat. Methods | 2011 | 21572407 | A quantitative analysis of CLIP methods for identifying binding sites of RNA-binding proteins. |
21 | 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. |
22 | Karginov et al. | Genes Dev. | 2013 | 23824327 | Remodeling of Ago2-mRNA interactions upon cellular stress reflects miRNA complementarity and correlates with altered translation rates. |
23 | Haecker et al. | PLoS Pathog. | 2012 | 22927820 | Ago HITS-CLIP expands understanding of Kaposi's sarcoma-associated herpesvirus miRNA function in primary effusion lymphomas. |
24 | Xue et al. | Cell | 2013 | 23313552 | Direct conversion of fibroblasts to neurons by reprogramming PTB-regulated microRNA circuits. |
25 | Kishore et al. | Genome Biol. | 2013 | 23706177 | Insights into snoRNA biogenesis and processing from PAR-CLIP of snoRNA core proteins and small RNA sequencing. |
26 | Chi et al. | Nature | 2009 | 19536157 | Argonaute HITS-CLIP decodes microRNA-mRNA interaction maps. |