miRNA | gene name | experiments | ||||
---|---|---|---|---|---|---|
mmu-miR-669e-5p | Lifr |
|
||||
mmu-miR-669e-5p | Wdr59 |
|
||||
mmu-miR-669e-5p | Mmp25 |
|
||||
mmu-miR-669e-5p | Ubac1 |
|
||||
mmu-miR-669e-5p | Mzt1 |
|
||||
mmu-miR-669e-5p | Fzd2 |
|
||||
mmu-miR-669e-5p | Trp53rkb |
|
||||
mmu-miR-669e-5p | Smad9 |
|
||||
mmu-miR-669e-5p | Slc6a20b |
|
||||
mmu-miR-669e-5p | Pex13 |
|
||||
mmu-miR-669e-5p | Mmachc |
|
||||
mmu-miR-669e-5p | Bpnt1 |
|
||||
mmu-miR-669e-5p | Timmdc1 |
|
||||
mmu-miR-669e-5p | Mkl2 |
|
||||
mmu-miR-669e-5p | Ccdc127 |
|
||||
mmu-miR-669e-5p | Ttyh1 |
|
||||
mmu-miR-669e-5p | Polr1b |
|
||||
mmu-miR-669e-5p | Zbtb44 |
|
||||
mmu-miR-669e-5p | Sc5d |
|
||||
mmu-miR-669e-5p | Ppm1k |
|
||||
mmu-miR-669e-5p | Mocs1 |
|
||||
mmu-miR-669e-5p | Elfn1 |
|
||||
mmu-miR-669e-5p | Mllt1 |
|
||||
mmu-miR-669e-5p | Zbtb8a |
|
||||
mmu-miR-669e-5p | Tnfsf15 |
|
||||
mmu-miR-669e-5p | Rbm11 |
|
||||
mmu-miR-669e-5p | Lrrn4cl |
|
||||
mmu-miR-669e-5p | Kdelc2 |
|
||||
mmu-miR-669e-5p | C3ar1 |
|
||||
mmu-miR-669e-5p | Aqp7 |
|
||||
mmu-miR-669e-5p | Smco1 |
|
||||
mmu-miR-669e-5p | Ston2 |
|
||||
mmu-miR-669e-5p | Slc35e2 |
|
||||
mmu-miR-669e-5p | Sgms2 |
|
||||
mmu-miR-669e-5p | Cst6 |
|
||||
mmu-miR-669e-5p | Siglece |
|
||||
mmu-miR-669e-5p | Senp5 |
|
||||
mmu-miR-669e-5p | Rfxank |
|
||||
mmu-miR-669e-5p | Pdxk |
|
||||
mmu-miR-669e-5p | Tbc1d24 |
|
||||
mmu-miR-669e-5p | Oscp1 |
|
||||
mmu-miR-669e-5p | Med18 |
|
||||
mmu-miR-669e-5p | Kcnk6 |
|
||||
mmu-miR-669e-5p | Dhrs7b |
|
||||
mmu-miR-669e-5p | Gng2 |
|
||||
mmu-miR-669e-5p | Ube2j2 |
|
||||
mmu-miR-669e-5p | Rinl |
|
||||
mmu-miR-669e-5p | Zfp994 |
|
||||
mmu-miR-669e-5p | Wipf2 |
|
||||
mmu-miR-669e-5p | Pafah1b2 |
|
||||
mmu-miR-669e-5p | Utp15 |
|
||||
mmu-miR-669e-5p | Gfpt1 |
|
||||
mmu-miR-669e-5p | Eno2 |
|
||||
mmu-miR-669e-5p | Ednra |
|
authors | journal | year | Pubmed link | title | |
---|---|---|---|---|---|
1 | Schug et al. | BMC Genomics | 2013 | 23597149 | Dynamic recruitment of microRNAs to their mRNA targets in the regenerating liver. |
2 | Zhang et al. | Cell | 2014 | 25083871 | MicroRNA directly enhances mitochondrial translation during muscle differentiation. |
3 | Loeb et al. | Mol. Cell | 2012 | 23142080 | Transcriptome-wide miR-155 binding map reveals widespread noncanonical microRNA targeting. |
4 | 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. |