miRNA | gene name | experiments | ||||||||||
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hsa-miR-330-3p | E2F1 |
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hsa-miR-330-3p | CDC42 |
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hsa-miR-330-3p | CD44 |
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hsa-miR-330-3p | SH3GL2 |
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hsa-miR-330-3p | RPS2 |
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hsa-miR-330-3p | HIST1H3B |
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hsa-miR-330-3p | AGO1 |
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hsa-miR-330-3p | PRMT8 |
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hsa-miR-330-3p | RPS4X |
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hsa-miR-330-3p | FAM168B |
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hsa-miR-330-3p | SNRPD3 |
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hsa-miR-330-3p | TUBB |
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hsa-miR-330-3p | SLIT2 |
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hsa-miR-330-3p | TRRAP |
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hsa-miR-330-3p | NCS1 |
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hsa-miR-330-3p | PIK3R4 |
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hsa-miR-330-3p | USP9X |
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hsa-miR-330-3p | PFKFB3 |
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hsa-miR-330-3p | HIST1H2AC |
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hsa-miR-330-3p | NUP153 |
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hsa-miR-330-3p | PKM |
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hsa-miR-330-3p | CASP8AP2 |
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hsa-miR-330-3p | THRA |
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hsa-miR-330-3p | ZMYM3 |
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hsa-miR-330-3p | VMA21 |
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hsa-miR-330-3p | ZBTB18 |
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hsa-miR-330-3p | TARBP2 |
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hsa-miR-330-3p | YWHAH |
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hsa-miR-330-3p | PCMT1 |
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hsa-miR-330-3p | TNRC6B |
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hsa-miR-330-3p | CDV3 |
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hsa-miR-330-3p | C5orf51 |
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hsa-miR-330-3p | SRP9 |
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hsa-miR-330-3p | PNRC2 |
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hsa-miR-330-3p | CAPZA1 |
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hsa-miR-330-3p | C16orf52 |
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hsa-miR-330-3p | EFNA3 |
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hsa-miR-330-3p | CRKL |
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hsa-miR-330-3p | FAM172A |
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hsa-miR-330-3p | SP1 |
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hsa-miR-330-3p | MAP2K5 |
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hsa-miR-330-3p | ONECUT2 |
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hsa-miR-330-3p | ABCB5 |
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hsa-miR-330-3p | TMBIM4 |
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hsa-miR-330-3p | BCAS1 |
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hsa-miR-330-3p | GLRA2 |
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hsa-miR-330-3p | MAP3K2 |
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hsa-miR-330-3p | RCC2 |
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hsa-miR-330-3p | SLC19A3 |
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hsa-miR-330-3p | ZNF800 |
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hsa-miR-330-3p | URM1 |
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hsa-miR-330-3p | METTL21A |
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hsa-miR-330-3p | BLOC1S2 |
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hsa-miR-330-3p | ATL3 |
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hsa-miR-330-3p | MDM2 |
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hsa-miR-330-3p | KRTAP4-9 |
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hsa-miR-330-3p | CLTB |
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hsa-miR-330-3p | TRIM24 |
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hsa-miR-330-3p | AGBL3 |
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hsa-miR-330-3p | ZC3H6 |
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hsa-miR-330-3p | GUCY1A2 |
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hsa-miR-330-3p | BBX |
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hsa-miR-330-3p | SPATA2 |
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hsa-miR-330-3p | ZNF566 |
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hsa-miR-330-3p | SFTPB |
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hsa-miR-330-3p | ORC5 |
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hsa-miR-330-3p | SMG1 |
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hsa-miR-330-3p | MTA3 |
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hsa-miR-330-3p | MLH1 |
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hsa-miR-330-3p | NXT2 |
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hsa-miR-330-3p | PEX14 |
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hsa-miR-330-3p | SYNPO |
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hsa-miR-330-3p | DHX35 |
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hsa-miR-330-3p | SPTLC2 |
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hsa-miR-330-3p | TOMM40L |
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hsa-miR-330-3p | SDR16C5 |
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hsa-miR-330-3p | HACD3 |
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hsa-miR-330-3p | PHC3 |
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hsa-miR-330-3p | NAA50 |
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hsa-miR-330-3p | MED28 |
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hsa-miR-330-3p | LRRC8A |
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hsa-miR-330-3p | SLC35E1 |
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hsa-miR-330-3p | KPNA1 |
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hsa-miR-330-3p | GFPT1 |
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hsa-miR-330-3p | ZNF460 |
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hsa-miR-330-3p | TJAP1 |
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hsa-miR-330-3p | SGO1 |
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hsa-miR-330-3p | ARHGAP12 |
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hsa-miR-330-3p | PAFAH1B2 |
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hsa-miR-330-3p | ZBTB16 |
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hsa-miR-330-3p | TGFBR3 |
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hsa-miR-330-3p | CCDC88C |
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hsa-miR-330-3p | LZIC |
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hsa-miR-330-3p | PPIC |
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hsa-miR-330-3p | BCL11B |
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hsa-miR-330-3p | COX7A2L |
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hsa-miR-330-3p | COL19A1 |
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hsa-miR-330-3p | PCK1 |
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hsa-miR-330-3p | SLCO3A1 |
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hsa-miR-330-3p | HRK |
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hsa-miR-330-3p | DCP2 |
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hsa-miR-330-3p | ROBO1 |
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hsa-miR-330-3p | CRLS1 |
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hsa-miR-330-3p | IRX2 |
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hsa-miR-330-3p | CLEC17A |
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hsa-miR-330-3p | PHF13 |
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hsa-miR-330-3p | GPR171 |
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hsa-miR-330-3p | BSPRY |
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hsa-miR-330-3p | RASA4 |
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hsa-miR-330-3p | RTP4 |
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hsa-miR-330-3p | VPS52 |
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hsa-miR-330-3p | SP4 |
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hsa-miR-330-3p | HCFC2 |
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hsa-miR-330-3p | SFT2D3 |
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hsa-miR-330-3p | PTGFRN |
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hsa-miR-330-3p | RBM23 |
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hsa-miR-330-3p | NCMAP |
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hsa-miR-330-3p | KIAA0930 |
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hsa-miR-330-3p | SLC1A5 |
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hsa-miR-330-3p | PLEKHA8 |
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hsa-miR-330-3p | NEGR1 |
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hsa-miR-330-3p | FAM126B |
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hsa-miR-330-3p | CNBP |
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hsa-miR-330-3p | SLC4A2 |
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hsa-miR-330-3p | FBXL17 |
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hsa-miR-330-3p | JPH1 |
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hsa-miR-330-3p | RIMBP2 |
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hsa-miR-330-3p | CELF1 |
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authors | journal | year | Pubmed link | title | |
---|---|---|---|---|---|
1 | Lee et al. | Oncogene | 2009 | 19597470 | MicroRNA-330 acts as tumor suppressor and induces apoptosis of prostate cancer cells through E2F1-mediated suppression of Akt phosphorylation. |
2 | Li et al. | Biochem. Biophys. Res. Commun. | 2013 | 23337504 | miR-330 regulates the proliferation of colorectal cancer cells by targeting Cdc42. |
3 | Jeyapalan et al. | Nucleic Acids Res. | 2011 | 21149267 | Expression of CD44 3'-untranslated region regulates endogenous microRNA functions in tumorigenesis and angiogenesis. |
4 | Qu et al. | PLoS ONE | 2012 | 23029364 | MicroRNA-330 is an oncogenic factor in glioblastoma cells by regulating SH3GL2 gene. |
5 | Helwak et al. | Cell | 2013 | 23622248 | Mapping the human miRNA interactome by CLASH reveals frequent noncanonical binding. |
6 | Memczak et al. | Nature | 2013 | 23446348 | Circular RNAs are a large class of animal RNAs with regulatory potency. |
7 | Hafner et al. | Cell | 2010 | 20371350 | Transcriptome-wide identification of RNA-binding protein and microRNA target sites by PAR-CLIP. |
8 | Kishore et al. | Nat. Methods | 2011 | 21572407 | A quantitative analysis of CLIP methods for identifying binding sites of RNA-binding proteins. |
9 | Chi et al. | Nature | 2009 | 19536157 | Argonaute HITS-CLIP decodes microRNA-mRNA interaction maps. |
10 | Karginov et al. | Genes Dev. | 2013 | 23824327 | Remodeling of Ago2-mRNA interactions upon cellular stress reflects miRNA complementarity and correlates with altered translation rates. |
11 | Gottwein et al. | Cell Host Microbe | 2011 | 22100165 | Viral microRNA targetome of KSHV-infected primary effusion lymphoma cell lines. |
12 | Whisnant et al. | MBio | 2013 | 23592263 | In-depth analysis of the interaction of HIV-1 with cellular microRNA biogenesis and effector mechanisms. |
13 | Xue et al. | Cell | 2013 | 23313552 | Direct conversion of fibroblasts to neurons by reprogramming PTB-regulated microRNA circuits. |
14 | 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. |
15 | Mao et al. | Oncol. Rep. | 2013 | 23670210 | microRNA-330 inhibits cell motility by downregulating Sp1 in prostate cancer cells. |
16 | Jensen et al. | Am. J. Med. Genet. B Neuropsychiatr. Genet. | 2014 | 24436253 | The effects of a MAP2K5 microRNA target site SNP on risk for anxiety and depressive disorders. |
17 | Skalsky et al. | PLoS Pathog. | 2012 | 22291592 | The viral and cellular microRNA targetome in lymphoblastoid cell lines. |
18 | Majoros et al. | Nat. Methods | 2013 | 23708386 | MicroRNA target site identification by integrating sequence and binding information. |
19 | 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. |