| miRNA | gene name | experiments | ||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| mmu-miR-200a-3p | Dlx5 |
|
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| mmu-miR-200a-3p | Nrp1 |
|
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| mmu-miR-200a-3p | Zeb2 |
|
||||||||||||||
| mmu-miR-200a-3p | Dcx |
|
||||||||||||||
| mmu-miR-200a-3p | Pafah1b1 |
|
||||||||||||||
| mmu-miR-200a-3p | Pkd1 |
|
||||||||||||||
| mmu-miR-200a-3p | St3gal3 |
|
||||||||||||||
| mmu-miR-200a-3p | Wdr70 |
|
||||||||||||||
| mmu-miR-200a-3p | Lsm12 |
|
||||||||||||||
| mmu-miR-200a-3p | Flnb |
|
||||||||||||||
| mmu-miR-200a-3p | Defb21 |
|
||||||||||||||
| mmu-miR-200a-3p | Tgfb2 |
|
||||||||||||||
| mmu-miR-200a-3p | Smurf2 |
|
||||||||||||||
| mmu-miR-200a-3p | Rasgrp1 |
|
||||||||||||||
| mmu-miR-200a-3p | Ptpn21 |
|
||||||||||||||
| mmu-miR-200a-3p | Ppp4r2 |
|
||||||||||||||
| mmu-miR-200a-3p | Hipk3 |
|
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| mmu-miR-200a-3p | Fat3 |
|
||||||||||||||
| mmu-miR-200a-3p | Erc2 |
|
||||||||||||||
| mmu-miR-200a-3p | 1600012H06Rik |
|
||||||||||||||
| mmu-miR-200a-3p | Zfp408 |
|
||||||||||||||
| mmu-miR-200a-3p | Adprm |
|
||||||||||||||
| mmu-miR-200a-3p | Mtmr6 |
|
||||||||||||||
| mmu-miR-200a-3p | Ccdc110 |
|
||||||||||||||
| mmu-miR-200a-3p | Olfm1 |
|
||||||||||||||
| mmu-miR-200a-3p | Mc1r |
|
||||||||||||||
| mmu-miR-200a-3p | Hephl1 |
|
||||||||||||||
| mmu-miR-200a-3p | Fam227a |
|
||||||||||||||
| mmu-miR-200a-3p | Tmem56 |
|
||||||||||||||
| mmu-miR-200a-3p | Slc23a2 |
|
||||||||||||||
| mmu-miR-200a-3p | Qk |
|
||||||||||||||
| mmu-miR-200a-3p | Myh10 |
|
||||||||||||||
| mmu-miR-200a-3p | Abhd18 |
|
||||||||||||||
| mmu-miR-200a-3p | N4bp2l2 |
|
||||||||||||||
| mmu-miR-200a-3p | Hnf4g |
|
||||||||||||||
| mmu-miR-200a-3p | Homez |
|
||||||||||||||
| mmu-miR-200a-3p | Dph7 |
|
| authors | journal | year | Pubmed link | title | |
|---|---|---|---|---|---|
| 1 | Itoh et al. | J. Biol. Chem. | 2009 | 19454767 | MicroRNA-141 and -200a are involved in bone morphogenetic protein-2-induced mouse pre-osteoblast differentiation by targeting distal-less homeobox 5. |
| 2 | Lin et al. | EMBO J. | 2009 | 19745813 | Myc-regulated microRNAs attenuate embryonic stem cell differentiation. |
| 3 | Oba et al. | PLoS ONE | 2010 | 21049046 | miR-200b precursor can ameliorate renal tubulointerstitial fibrosis. |
| 4 | Xia et al. | J. Biol. Chem. | 2010 | 20826811 | miR-200a regulates epithelial-mesenchymal to stem-like transition via ZEB2 and beta-catenin signaling. |
| 5 | Korpal et al. | J. Biol. Chem. | 2008 | 18411277 | The miR-200 family inhibits epithelial-mesenchymal transition and cancer cell migration by direct targeting of E-cadherin transcriptional repressors ZEB1 and ZEB2. |
| 6 | Oba et al. | BMC Res Notes | 2013 | 24245745 | A useful method of identifying of miRNAs which can down-regulate Zeb-2. |
| 7 | Shyamasundar et al. | PLoS ONE | 2013 | 23776576 | Analysis of epigenetic factors in mouse embryonic neural stem cells exposed to hyperglycemia. |
| 8 | Patel et al. | J. Am. Soc. Nephrol. | 2012 | 23138483 | MicroRNAs regulate renal tubule maturation through modulation of Pkd1. |
| 9 | Teruel et al. | J. Biomed. Sci. | 2013 | 23678987 | Control of post-translational modifications in antithrombin during murine post-natal development by miR-200a. |
| 10 | Zhang et al. | Cell | 2014 | 25083871 | MicroRNA directly enhances mitochondrial translation during muscle differentiation. |
| 11 | Loeb et al. | Mol. Cell | 2012 | 23142080 | Transcriptome-wide miR-155 binding map reveals widespread noncanonical microRNA targeting. |
| 12 | Leung et al. | Nat. Struct. Mol. Biol. | 2011 | 21258322 | Genome-wide identification of Ago2 binding sites from mouse embryonic stem cells with and without mature microRNAs. |