| miRNA | gene name | experiments | ||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| mmu-miR-132-3p | Mecp2 |
|
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| mmu-miR-132-3p | Rfx4 |
|
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| mmu-miR-132-3p | Ep300 |
|
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| mmu-miR-132-3p | Kdm5a |
|
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| mmu-miR-132-3p | Btg2 |
|
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| mmu-miR-132-3p | Paip2 |
|
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| mmu-miR-132-3p | Mmp9 |
|
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| mmu-miR-132-3p | Ptbp2 |
|
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| mmu-miR-132-3p | Nr4a2 |
|
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| mmu-miR-132-3p | Arhgap32 |
|
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| mmu-miR-132-3p | Foxo3 |
|
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| mmu-miR-132-3p | Ache |
|
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| mmu-miR-132-3p | Vmp1 |
|
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| mmu-miR-132-3p | Zfyve1 |
|
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| mmu-miR-132-3p | Usp54 |
|
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| mmu-miR-132-3p | Slc11a2 |
|
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| mmu-miR-132-3p | Rictor |
|
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| mmu-miR-132-3p | Rgs7bp |
|
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| mmu-miR-132-3p | Elovl7 |
|
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| mmu-miR-132-3p | Cdh4 |
|
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| mmu-miR-132-3p | Cdc37l1 |
|
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| mmu-miR-132-3p | Arrdc3 |
|
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| mmu-miR-132-3p | Zyg11b |
|
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| mmu-miR-132-3p | Sco1 |
|
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| mmu-miR-132-3p | Tnfsf10 |
|
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| mmu-miR-132-3p | Stambp |
|
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| mmu-miR-132-3p | Xrcc2 |
|
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| mmu-miR-132-3p | Ado |
|
| authors | journal | year | Pubmed link | title | |
|---|---|---|---|---|---|
| 1 | Alvarez-Saavedra et al. | Hum. Mol. Genet. | 2011 | 21118894 | miRNA-132 orchestrates chromatin remodeling and translational control of the circadian clock. |
| 2 | Mann et al. | Gastroenterology | 2010 | 19843474 | MeCP2 controls an epigenetic pathway that promotes myofibroblast transdifferentiation and fibrosis. |
| 3 | Cheng et al. | Neuron | 2007 | 17553428 | microRNA modulation of circadian-clock period and entrainment. |
| 4 | Ucar et al. | Nat. Genet. | 2010 | 21057503 | miR-212 and miR-132 are required for epithelial stromal interactions necessary for mouse mammary gland development. |
| 5 | Smith et al. | Hum. Mol. Genet. | 2011 | 21807765 | MicroRNA-132 loss is associated with tau exon 10 inclusion in progressive supranuclear palsy. |
| 6 | Yang et al. | J. Cell. Sci. | 2012 | 22328530 | miR-132 regulates the differentiation of dopamine neurons by directly targeting Nurr1 expression. |
| 7 | Shaltiel et al. | Brain Struct Funct | 2013 | 22246100 | Hippocampal microRNA-132 mediates stress-inducible cognitive deficits through its acetylcholinesterase target. |
| 8 | Ucar et al. | Nat Commun | 2012 | 23011132 | The miRNA-212/132 family regulates both cardiac hypertrophy and cardiomyocyte autophagy. |
| 9 | Hanieh et al. | Eur. J. Immunol. | 2013 | 23780851 | MicroRNA-132 suppresses autoimmune encephalomyelitis by inducing cholinergic anti-inflammation: a new Ahr-based exploration. |
| 10 | Loeb et al. | Mol. Cell | 2012 | 23142080 | Transcriptome-wide miR-155 binding map reveals widespread noncanonical microRNA targeting. |
| 11 | Schug et al. | BMC Genomics | 2013 | 23597149 | Dynamic recruitment of microRNAs to their mRNA targets in the regenerating liver. |
| 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. |
| 13 | Riemondy et al. | Elife | 2015 | 26203562 | MicroRNA-203 represses selection and expansion of oncogenic Hras transformed tumor initiating cells. |
| 14 | Zhang et al. | Cell | 2014 | 25083871 | MicroRNA directly enhances mitochondrial translation during muscle differentiation. |