Targets miRBase

hsa-miR-34b-5p (MIMAT0000685) (95 targets) in miRTarBase

miRNA gene name experiments
hsa-miR-34b-5p BCL2
qRT-PCR [1]
Western blot [1]
Luciferase reporter assay [1]
hsa-miR-34b-5p CREB1
qRT-PCR [2]
Western blot [2]
Luciferase reporter assay [2] [3]
hsa-miR-34b-5p MYB
microarray [3]
hsa-miR-34b-5p CAV1
microarray [3]
hsa-miR-34b-5p MET
Luciferase reporter assay [3]
hsa-miR-34b-5p CDK6
Luciferase reporter assay [3]
PAR-CLIP [4]
hsa-miR-34b-5p CDK4
Luciferase reporter assay [3]
hsa-miR-34b-5p CCNE2
Luciferase reporter assay [3]
hsa-miR-34b-5p MYC
HITS-CLIP [5]
Luciferase reporter assay [3]
PAR-CLIP [6] [5] [7]
hsa-miR-34b-5p SRSF2
microarray [3]
hsa-miR-34b-5p HNF4A
Luciferase reporter assay [8]
hsa-miR-34b-5p TGFBR2
qRT-PCR [9]
Western blot [9]
Luciferase reporter assay [9]
PAR-CLIP [10]
hsa-miR-34b-5p CTNNB1
Western blot [11]
Luciferase reporter assay [11]
hsa-miR-34b-5p AXIN2
Western blot [11]
Luciferase reporter assay [11]
hsa-miR-34b-5p ARL5B
PAR-CLIP [12]
hsa-miR-34b-5p BTG2
PAR-CLIP [6] [4] [7]
hsa-miR-34b-5p HOXC8
PAR-CLIP [12] [5] [13]
hsa-miR-34b-5p MTDH
PAR-CLIP [12] [5] [4] [7]
hsa-miR-34b-5p XRCC6
PAR-CLIP [12] [6] [4]
hsa-miR-34b-5p MARVELD2
PAR-CLIP [5]
hsa-miR-34b-5p SLC29A1
PAR-CLIP [6]
hsa-miR-34b-5p EVI5L
PAR-CLIP [5]
hsa-miR-34b-5p TNFAIP2
PAR-CLIP [13]
hsa-miR-34b-5p CD274
qRT-PCR [14]
Luciferase reporter assay [14]
hsa-miR-34b-5p MFSD8
PAR-CLIP [15]
hsa-miR-34b-5p RPS19
PAR-CLIP [4]
hsa-miR-34b-5p HIRIP3
PAR-CLIP [4]
hsa-miR-34b-5p CNOT4
PAR-CLIP [6] [5] [4]
hsa-miR-34b-5p SPAM1
PAR-CLIP [4]
hsa-miR-34b-5p ZNF264
PAR-CLIP [4]
hsa-miR-34b-5p ZNF317
PAR-CLIP [4]
hsa-miR-34b-5p EFNB1
PAR-CLIP [4]
hsa-miR-34b-5p PRICKLE4
PAR-CLIP [4]
hsa-miR-34b-5p PPP1R11
PAR-CLIP [4]
hsa-miR-34b-5p KCTD5
PAR-CLIP [4]
hsa-miR-34b-5p IFNLR1
PAR-CLIP [4]
hsa-miR-34b-5p ETF1
PAR-CLIP [4]
hsa-miR-34b-5p CTDNEP1
PAR-CLIP [4]
hsa-miR-34b-5p BTRC
PAR-CLIP [4]
hsa-miR-34b-5p ARIH2
PAR-CLIP [4]
hsa-miR-34b-5p ARPP19
PAR-CLIP [6] [4]
hsa-miR-34b-5p ANKRD42
PAR-CLIP [4]
hsa-miR-34b-5p MALT1
PAR-CLIP [4]
hsa-miR-34b-5p KCNJ11
PAR-CLIP [12] [6] [10] [4]
hsa-miR-34b-5p ARHGAP1
PAR-CLIP [5] [4] [6]
hsa-miR-34b-5p PNMA8B
PAR-CLIP [13]
hsa-miR-34b-5p VTI1B
PAR-CLIP [13]
hsa-miR-34b-5p AGO1
PAR-CLIP [13]
hsa-miR-34b-5p ZNF546
PAR-CLIP [13]
hsa-miR-34b-5p MRPL12
PAR-CLIP [13]
hsa-miR-34b-5p TMEM151A
PAR-CLIP [13]
hsa-miR-34b-5p ATP1B4
PAR-CLIP [13]
hsa-miR-34b-5p SNX17
PAR-CLIP [13]
hsa-miR-34b-5p RBL1
PAR-CLIP [13]
hsa-miR-34b-5p TRIM73
PAR-CLIP [13]
hsa-miR-34b-5p TRIM74
PAR-CLIP [13]
hsa-miR-34b-5p SHROOM2
PAR-CLIP [13]
hsa-miR-34b-5p SLC2A13
PAR-CLIP [13]
hsa-miR-34b-5p BAZ2A
PAR-CLIP [13]
hsa-miR-34b-5p MAST3
PAR-CLIP [13]
hsa-miR-34b-5p EBI3
PAR-CLIP [13]
hsa-miR-34b-5p TAGLN
PAR-CLIP [13]
hsa-miR-34b-5p LITAF
PAR-CLIP [12] [7]
hsa-miR-34b-5p XBP1P1
PAR-CLIP [6] [5] [7]
hsa-miR-34b-5p GIGYF1
PAR-CLIP [12] [7]
hsa-miR-34b-5p CAMSAP2
PAR-CLIP [7]
hsa-miR-34b-5p TMEM167A
PAR-CLIP [12]
hsa-miR-34b-5p FERMT2
PAR-CLIP [12]
hsa-miR-34b-5p CXorf38
PAR-CLIP [12]
hsa-miR-34b-5p ZDHHC18
PAR-CLIP [12]
hsa-miR-34b-5p MAP3K7
PAR-CLIP [6] [12]
hsa-miR-34b-5p C18orf32
PAR-CLIP [10]
hsa-miR-34b-5p ZNF582
PAR-CLIP [10]
hsa-miR-34b-5p TBC1D1
PAR-CLIP [10]
hsa-miR-34b-5p XIAP
PAR-CLIP [5]
hsa-miR-34b-5p IGF1R
PAR-CLIP [5]
hsa-miR-34b-5p GOLIM4
PAR-CLIP [5]
hsa-miR-34b-5p ORC4
PAR-CLIP [5]
hsa-miR-34b-5p EPM2AIP1
PAR-CLIP [5]
hsa-miR-34b-5p HDGFL2
PAR-CLIP [5]
hsa-miR-34b-5p UBXN2A
PAR-CLIP [5] [6]
hsa-miR-34b-5p PAPD7
PAR-CLIP [6] [5]
hsa-miR-34b-5p HIF1A
PAR-CLIP [5]
hsa-miR-34b-5p GXYLT2
PAR-CLIP [5]
hsa-miR-34b-5p ATXN1
PAR-CLIP [5]
hsa-miR-34b-5p TROVE2
PAR-CLIP [6]
hsa-miR-34b-5p PTAR1
PAR-CLIP [6]
hsa-miR-34b-5p VASN
PAR-CLIP [6]
hsa-miR-34b-5p ITGA11
HITS-CLIP [16] [17]
hsa-miR-34b-5p DDA1
HITS-CLIP [18]
hsa-miR-34b-5p IRF2BPL
HITS-CLIP [18]
hsa-miR-34b-5p ZSCAN29
HITS-CLIP [17] [18]
hsa-miR-34b-5p PURA
HITS-CLIP [18]
hsa-miR-34b-5p ZNF451
HITS-CLIP [18]
hsa-miR-34b-5p RHOG
HITS-CLIP [17]

References

authors journal year Pubmed link title
1 Ji et al. BMC Cancer 2008 18803879 Restoration of tumor suppressor miR-34 inhibits human p53-mutant gastric cancer tumorspheres.
2 Pigazzi et al. Cancer Res. 2009 19258499 miR-34b targets cyclic AMP-responsive element binding protein in acute myeloid leukemia.
3 Hermeking et al. Cell Death Differ. 2010 19461653 The miR-34 family in cancer and apoptosis.
4 Whisnant et al. MBio 2013 23592263 In-depth analysis of the interaction of HIV-1 with cellular microRNA biogenesis and effector mechanisms.
5 Kishore et al. Nat. Methods 2011 21572407 A quantitative analysis of CLIP methods for identifying binding sites of RNA-binding proteins.
6 Hafner et al. Cell 2010 20371350 Transcriptome-wide identification of RNA-binding protein and microRNA target sites by PAR-CLIP.
7 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.
8 Ramamoorthy et al. Drug Metab. Dispos. 2012 22232426 In silico and in vitro identification of microRNAs that regulate hepatic nuclear factor 4α expression.
9 Ahluwalia et al. RNA Biol 2012 22336710 Modeling SNP mediated differential targeting of homologous 3'UTR by microRNA.
10 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.
11 Cha et al. Cell Cycle 2012 22421157 MiRNA-34 intrinsically links p53 tumor suppressor and Wnt signaling.
12 Memczak et al. Nature 2013 23446348 Circular RNAs are a large class of animal RNAs with regulatory potency.
13 Skalsky et al. PLoS Pathog. 2012 22291592 The viral and cellular microRNA targetome in lymphoblastoid cell lines.
14 Nygren et al. Br. J. Cancer 2014 24577056 Identifying microRNAs regulating B7-H3 in breast cancer: the clinical impact of microRNA-29c.
15 Gottwein et al. Cell Host Microbe 2011 22100165 Viral microRNA targetome of KSHV-infected primary effusion lymphoma cell lines.
16 Pillai et al. Breast Cancer Res. Treat. 2014 24906430 HITS-CLIP reveals key regulators of nuclear receptor signaling in breast cancer.
17 Xue et al. Cell 2013 23313552 Direct conversion of fibroblasts to neurons by reprogramming PTB-regulated microRNA circuits.
18 Karginov et al. Genes Dev. 2013 23824327 Remodeling of Ago2-mRNA interactions upon cellular stress reflects miRNA complementarity and correlates with altered translation rates.