| miRNA | gene name | experiments | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| hsa-miR-99b-5p | RAVER2 |
|
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| hsa-miR-99b-5p | MTOR |
|
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| hsa-miR-99b-5p | TANC2 |
|
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| hsa-miR-99b-5p | CNTNAP2 |
|
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| hsa-miR-99b-5p | HIST1H1C |
|
||||||||||
| hsa-miR-99b-5p | UBL7 |
|
||||||||||
| hsa-miR-99b-5p | ALDH1B1 |
|
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| hsa-miR-99b-5p | H2AFZ |
|
||||||||||
| hsa-miR-99b-5p | CHEK1 |
|
||||||||||
| hsa-miR-99b-5p | DYRK1A |
|
||||||||||
| hsa-miR-99b-5p | PLA2G4F |
|
||||||||||
| hsa-miR-99b-5p | TMEM127 |
|
||||||||||
| hsa-miR-99b-5p | IGF2BP1 |
|
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| hsa-miR-99b-5p | DHFR |
|
||||||||||
| hsa-miR-99b-5p | DDX39A |
|
||||||||||
| hsa-miR-99b-5p | RPS10 |
|
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| hsa-miR-99b-5p | NPDC1 |
|
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| hsa-miR-99b-5p | ACTG1 |
|
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| hsa-miR-99b-5p | HOXA3 |
|
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| hsa-miR-99b-5p | MFN2 |
|
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| hsa-miR-99b-5p | EDC3 |
|
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| hsa-miR-99b-5p | WDR48 |
|
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| hsa-miR-99b-5p | CAMSAP3 |
|
||||||||||
| hsa-miR-99b-5p | SP1 |
|
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| hsa-miR-99b-5p | ND6 |
|
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| hsa-miR-99b-5p | RPS2 |
|
||||||||||
| hsa-miR-99b-5p | ETV6 |
|
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| hsa-miR-99b-5p | DDHD2 |
|
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| hsa-miR-99b-5p | OAT |
|
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| hsa-miR-99b-5p | MCM3 |
|
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| hsa-miR-99b-5p | HK1 |
|
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| hsa-miR-99b-5p | TRPS1 |
|
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| hsa-miR-99b-5p | ACTR1B |
|
||||||||||
| hsa-miR-99b-5p | RNF213 |
|
||||||||||
| hsa-miR-99b-5p | FAM171A2 |
|
||||||||||
| hsa-miR-99b-5p | AHSA1 |
|
||||||||||
| hsa-miR-99b-5p | PIP4K2B |
|
||||||||||
| hsa-miR-99b-5p | FAM8A1 |
|
||||||||||
| hsa-miR-99b-5p | EIF4A3 |
|
||||||||||
| hsa-miR-99b-5p | ENO2 |
|
||||||||||
| hsa-miR-99b-5p | EDF1 |
|
||||||||||
| hsa-miR-99b-5p | EEF2 |
|
||||||||||
| hsa-miR-99b-5p | KBTBD8 |
|
||||||||||
| hsa-miR-99b-5p | SMARCA5 |
|
||||||||||
| hsa-miR-99b-5p | GRHL1 |
|
||||||||||
| hsa-miR-99b-5p | PPP1CB |
|
||||||||||
| hsa-miR-99b-5p | SMPDL3B |
|
||||||||||
| hsa-miR-99b-5p | TMEM30A |
|
| authors | journal | year | Pubmed link | title | |
|---|---|---|---|---|---|
| 1 | Beitzinger et al. | RNA Biol | 2007 | 17637574 | Identification of human microRNA targets from isolated argonaute protein complexes. |
| 2 | Turcatel et al. | PLoS ONE | 2012 | 22299047 | MIR-99a and MIR-99b modulate TGF-β induced epithelial to mesenchymal plasticity in normal murine mammary gland cells. |
| 3 | Wang et al. | Med. Oncol. | 2014 | 24668416 | miR-99a and -99b inhibit cervical cancer cell proliferation and invasion by targeting mTOR signaling pathway. |
| 4 | Helwak et al. | Cell | 2013 | 23622248 | Mapping the human miRNA interactome by CLASH reveals frequent noncanonical binding. |
| 5 | Memczak et al. | Nature | 2013 | 23446348 | Circular RNAs are a large class of animal RNAs with regulatory potency. |
| 6 | Kishore et al. | Nat. Methods | 2011 | 21572407 | A quantitative analysis of CLIP methods for identifying binding sites of RNA-binding proteins. |
| 7 | 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. |
| 8 | Hafner et al. | Cell | 2010 | 20371350 | Transcriptome-wide identification of RNA-binding protein and microRNA target sites by PAR-CLIP. |
| 9 | Lu et al. | PLoS ONE | 2012 | 22815788 | MicroRNA profiling in mucosal biopsies of eosinophilic esophagitis patients pre and post treatment with steroids and relationship with mRNA targets. |