miRNA | gene name | experiments | ||||||||||||||
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mmu-miR-1a-3p | Gata4 |
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mmu-miR-1a-3p | Calm2 |
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mmu-miR-1a-3p | Calm1 |
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mmu-miR-1a-3p | Mef2a |
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mmu-miR-1a-3p | Hdac4 |
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mmu-miR-1a-3p | Igf1 |
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mmu-miR-1a-3p | Hand2 |
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mmu-miR-1a-3p | Irx5 |
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mmu-miR-1a-3p | Hspa1b |
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mmu-miR-1a-3p | Hspd1 |
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mmu-miR-1a-3p | Igf1r |
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mmu-miR-1a-3p | Srf |
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mmu-miR-1a-3p | Rheb |
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mmu-miR-1a-3p | Rps6 |
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mmu-miR-1a-3p | Nppa |
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mmu-miR-1a-3p | Rasa1 |
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mmu-miR-1a-3p | Cdk9 |
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mmu-miR-1a-3p | Fn1 |
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mmu-miR-1a-3p | Acta1 |
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mmu-miR-1a-3p | Myh6 |
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mmu-miR-1a-3p | Pax7 |
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mmu-miR-1a-3p | Pola1 |
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mmu-miR-1a-3p | Gja1 |
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mmu-miR-1a-3p | Klf4 |
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mmu-miR-1a-3p | Cdc42 |
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mmu-miR-1a-3p | Tlx2 |
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mmu-miR-1a-3p | Anxa5 |
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mmu-miR-1a-3p | Mkl1 |
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mmu-miR-1a-3p | Smarcd2 |
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mmu-miR-1a-3p | Clcn3 |
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mmu-miR-1a-3p | Smarcb1 |
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mmu-miR-1a-3p | Map4k3 |
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mmu-miR-1a-3p | Fzd7 |
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mmu-miR-1a-3p | Meox2 |
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mmu-miR-1a-3p | Nfat5 |
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mmu-miR-1a-3p | Rarb |
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mmu-miR-1a-3p | Sh3bgrl |
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mmu-miR-1a-3p | Hes1 |
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mmu-miR-1a-3p | Ets1 |
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mmu-miR-1a-3p | Myocd |
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mmu-miR-1a-3p | Adar |
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mmu-miR-1a-3p | Pax3 |
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mmu-miR-1a-3p | Cpeb1 |
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mmu-miR-1a-3p | Mup19 |
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mmu-miR-1a-3p | Mup12 |
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mmu-miR-1a-3p | Mup10 |
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mmu-miR-1a-3p | Mup14 |
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mmu-miR-1a-3p | Mup17 |
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mmu-miR-1a-3p | Mup11 |
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mmu-miR-1a-3p | Tgoln1 |
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mmu-miR-1a-3p | Rnf170 |
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mmu-miR-1a-3p | ASPH |
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authors | journal | year | Pubmed link | title | |
---|---|---|---|---|---|
1 | Ikeda et al. | Mol. Cell. Biol. | 2009 | 19188439 | MicroRNA-1 negatively regulates expression of the hypertrophy-associated calmodulin and Mef2a genes. |
2 | Chen et al. | Nat. Genet. | 2006 | 16380711 | The role of microRNA-1 and microRNA-133 in skeletal muscle proliferation and differentiation. |
3 | Elia et al. | Circulation | 2009 | 19933931 | Reciprocal regulation of microRNA-1 and insulin-like growth factor-1 signal transduction cascade in cardiac and skeletal muscle in physiological and pathological conditions. |
4 | Zhao et al. | Nature | 2005 | 15951802 | Serum response factor regulates a muscle-specific microRNA that targets Hand2 during cardiogenesis. |
5 | Zhao et al. | Cell | 2007 | 17397913 | Dysregulation of cardiogenesis, cardiac conduction, and cell cycle in mice lacking miRNA-1-2. |
6 | Xu et al. | J. Cell. Sci. | 2007 | 17715156 | The muscle-specific microRNAs miR-1 and miR-133 produce opposing effects on apoptosis by targeting HSP60, HSP70 and caspase-9 in cardiomyocytes. |
7 | Sayed et al. | Circ. Res. | 2007 | 17234972 | MicroRNAs play an essential role in the development of cardiac hypertrophy. |
8 | Chen et al. | J. Cell Biol. | 2010 | 20819939 | microRNA-1 and microRNA-206 regulate skeletal muscle satellite cell proliferation and differentiation by repressing Pax7. |
9 | Kim et al. | J. Cell Biol. | 2006 | 16923828 | Muscle-specific microRNA miR-206 promotes muscle differentiation. |
10 | Anderson et al. | Nucleic Acids Res. | 2006 | 17062625 | MIR-206 regulates connexin43 expression during skeletal muscle development. |
11 | Xie et al. | Stem Cells Dev. | 2011 | 20799856 | MicroRNA-1 regulates smooth muscle cell differentiation by repressing Kruppel-like factor 4. |
12 | Qian et al. | J. Cell Biol. | 2011 | 21690310 | Tinman/Nkx2-5 acts via miR-1 and upstream of Cdc42 to regulate heart function across species. |
13 | Tritsch et al. | Cardiovasc. Res. | 2013 | 23436819 | An SRF/miR-1 axis regulates NCX1 and annexin A5 protein levels in the normal and failing heart. |
14 | Minami et al. | EMBO J. | 2012 | 23103763 | Reciprocal expression of MRTF-A and myocardin is crucial for pathological vascular remodelling in mice. |
15 | Goljanek-Whysall et al. | J. Cell. Sci. | 2012 | 22595520 | Regulation of multiple target genes by miR-1 and miR-206 is pivotal for C2C12 myoblast differentiation. |
16 | Huang et al. | Biomed Res Int | 2013 | 23509692 | miR-1-mediated induction of cardiogenesis in mesenchymal stem cells via downregulation of Hes-1. |
17 | Fleming et al. | PeerJ | 2013 | 23646287 | Differential expression of miR-1, a putative tumor suppressing microRNA, in cancer resistant and cancer susceptible mice. |
18 | Wystub et al. | PLoS Genet. | 2013 | 24068960 | miR-1/133a clusters cooperatively specify the cardiomyogenic lineage by adjustment of myocardin levels during embryonic heart development. |
19 | Hsieh et al. | Cell Death Differ. | 2014 | 24440912 | ADAR1 deaminase contributes to scheduled skeletal myogenesis progression via stage-specific functions. |
20 | Schug et al. | BMC Genomics | 2013 | 23597149 | Dynamic recruitment of microRNAs to their mRNA targets in the regenerating liver. |
21 | Chi et al. | Nature | 2009 | 19536157 | Argonaute HITS-CLIP decodes microRNA-mRNA interaction maps. |
22 | Zhang et al. | Cell | 2014 | 25083871 | MicroRNA directly enhances mitochondrial translation during muscle differentiation. |
23 | Loeb et al. | Mol. Cell | 2012 | 23142080 | Transcriptome-wide miR-155 binding map reveals widespread noncanonical microRNA targeting. |
24 | Yildirim et al. | Cell Biochem. Biophys. | 2013 | 23723006 | Relationship between downregulation of miRNAs and increase of oxidative stress in the development of diabetic cardiac dysfunction: junctin as a target protein of miR-1. |