pre-miRNA Information | |
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pre-miRNA | hsa-mir-6751 |
Genomic Coordinates | chr11: 65129916 - 65129978 |
Description | Homo sapiens miR-6751 stem-loop |
Comment | None |
RNA Secondary Structure | ![]() |
Mature miRNA Information | |||||||||||||||||||||||||||||||
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Mature miRNA | hsa-miR-6751-3p | ||||||||||||||||||||||||||||||
Sequence | 43| ACUGAGCCUCUCUCUCUCCAG |63 | ||||||||||||||||||||||||||||||
Evidence | Experimental | ||||||||||||||||||||||||||||||
Experiments | Meta-analysis | DRVs in miRNA |
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SNPs in miRNA |
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Putative Targets |
Gene Information | |||||||||||||||||||||
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Gene Symbol | RAI1 | ||||||||||||||||||||
Synonyms | SMCR, SMS | ||||||||||||||||||||
Description | retinoic acid induced 1 | ||||||||||||||||||||
Transcript | NM_030665 | ||||||||||||||||||||
Expression | |||||||||||||||||||||
Putative miRNA Targets on RAI1 | |||||||||||||||||||||
3'UTR of RAI1 (miRNA target sites are highlighted) |
>RAI1|NM_030665|3'UTR 1 TAATCCACCCCAACGGCCGGAGGAGCCGCCGGAGCCCGCCTGCCCGCCCGCCGCCGAAGGAGAGGAGCCGCCTGCGCAGC 81 CCCCGGGCCTTTGAGCTGCTCCCAGCGCTGGTCCAGAGCCGATCCTTGATCCGGGTCCCGGATCGTGGATCCGGCCGCCT 161 AGGGCTCAGACTTGCGGCCCCGGGTTGGGAGGAAAACCCGTTCCGGAGCCGCCTGCTCCCGGAACCGGACGGCACAGGGC 241 GTTCTTGCCCACCCCAGGGGCCAGGCTTGCGGAGGGGGAGCCCGCGGAGCGGCCAGACTCCCCGGGGCGCTCAGCCTCCG 321 GCGAGGGTGGGAGACGGCTTTGTCCTGGGGACACTTTCCCTCTGGAATCTCAAGACGACGTGGCACACATTCCACGTGGG 401 TGCTGCCGCCACCCCAGTCGGTCGTGGCGTGCAGCTGGGAGCCCTGGGCTTGGGGGTGGGGGTCGAAACAGTACTGGAAG 481 AGGCGGAGGGCGGCTCCTAGCTCCGTGGACTAGGCGGGGGAGAAAGGAAGCCTTTCTGAGAGCGGGCTAGGCCGGCACTG 561 GAGAGGCCGGAGCCTTTGGAACAAACCGTGCGGAACGCGTCCAGGGGCCTTCCCGCCCAGCCTTTGCCAGATCTCTCGTG 641 CGGTTCGGGCAAAGCCGGGGTAGACCTGGGCTATGCTCAGTTAGGGGTTGCGGGATCCCCGAGTGTGGGCGGGACTGGGA 721 CACCCTTTGGCCTCTGTTTGTCCCCTTTCCAGTCCTCCACCCCACCCCTGGAGCCCAGCCTGGGAGCGCAAAACCCAAGA 801 AGCGGCCAGAACGCACCTCCGGCTCCGGCGGACGCGCGACCGTTGTGCACCACCAGGGACCGCCGCGCCTACTCTGCACG 881 GGAGCAGGGACAGCGCTAGATTTCGTGTACAAAACCTGTGTACCCCTCTATATATATGTTACATAGAATGTATATATGTT 961 GGGAACATGCTCGCTTCTCCCGTGTGTCGCCGCCGTGCGTCGTGCGCCCGCAACAGAGCCCCAACCGGGCCTTTGCCGGG 1041 TAAGGGGCTACCGCGACGCCACTTGTCCACGCAGCCACCACCGGCCCGGGCCAGTCCCTGCCAGTCCGTCCGCCTGTCCG 1121 TCCGTGTCCTCAGCTCTGTCCACGCTTCGATAGGCCTGACGCAGCCCCCAGCCCAGGGCCGCCCTAGCAACTTCCTGTAC 1201 ATATGACTGTAAAATGGTAAACGTGTGTATTATATCTGGCCTCGTTATATAGTGTATATATATGTATACATATACATATA 1281 TATAATATATATGAAGACTGTAAATGTTAAGACGACTAGTGTTCTTATTAGTATATTGCTTCACACTGAAGATTGTGTGT 1361 ATCGAGCTGTTTCTAAAAGATGTTTATTTTCCTTAAGAGTAAAAAACAGTCATTGCATTCAGAAAAAAAAAAAAAAAAAA 1441 GTCAATAAAGATACAACGATTGTTTTGGAAAAAAAAAA Target sites
Provided by authors
Predicted by miRanda
DRVs
SNPs
DRVs & SNPs
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miRNA-target interactions (Predicted by miRanda) |
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DRVs in gene 3'UTRs | |||||||||||||||||||||
SNPs in gene 3'UTRs |
Experimental Support 1 for Functional miRNA-Target Interaction | |
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miRNA:Target | ---- |
Validation Method |
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Conditions | HEK293 |
Disease | 10743.0 |
Location of target site | 3'UTR |
Tools used in this research | TargetScan , miRTarCLIP , Piranha |
Original Description (Extracted from the article) |
...
"HITS-CLIP data was present in GSM714643. RNA binding protein: AGO2. Condition:completeT1
... - Kishore S; Jaskiewicz L; Burger L; Hausser et al., 2011, Nature methods. |
Article |
- Kishore S; Jaskiewicz L; Burger L; Hausser et al. - Nature methods, 2011
Cross-linking and immunoprecipitation (CLIP) is increasingly used to map transcriptome-wide binding sites of RNA-binding proteins. We developed a method for CLIP data analysis, and applied it to compare CLIP with photoactivatable ribonucleoside-enhanced CLIP (PAR-CLIP) and to uncover how differences in cross-linking and ribonuclease digestion affect the identified sites. We found only small differences in accuracies of these methods in identifying binding sites of HuR, which binds low-complexity sequences, and Argonaute 2, which has a complex binding specificity. We found that cross-link-induced mutations led to single-nucleotide resolution for both PAR-CLIP and CLIP. Our results confirm the expectation from original CLIP publications that RNA-binding proteins do not protect their binding sites sufficiently under the denaturing conditions used during the CLIP procedure, and we show that extensive digestion with sequence-specific RNases strongly biases the recovered binding sites. This bias can be substantially reduced by milder nuclease digestion conditions.
LinkOut: [PMID: 21572407]
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Experimental Support 2 for Functional miRNA-Target Interaction | |||||||
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miRNA:Target | ---- | ||||||
Validation Method |
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Conditions | Cardiac Tissues | ||||||
Location of target site | 3'UTR | ||||||
Tools used in this research | TargetScan , miRTarCLIP , Piranha | ||||||
Original Description (Extracted from the article) |
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HITS-CLIP data was present in GSM2202480. RNA binding protein: AGO2. Condition:S5_LV_36yo_Male_AGO2_bound_RNA
... - Spengler RM; Zhang X; Cheng C; McLendon JM; et al., 2016, Nucleic acids research. |
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miRNA-target interactions (Provided by authors) |
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Article |
Elucidation of transcriptome-wide microRNA binding sites in human cardiac tissues by Ago2 HITS-CLIP.
- Spengler RM; Zhang X; Cheng C; McLendon JM; et al.- Nucleic acids research, 2016
MicroRNAs (miRs) have emerged as key biological effectors in human health and disease. These small noncoding RNAs are incorporated into Argonaute (Ago) proteins, where they direct post-transcriptional gene silencing via base-pairing with target transcripts. Although miRs have become intriguing biological entities and attractive therapeutic targets, the translational impacts of miR research remain limited by a paucity of empirical miR targeting data, particularly in human primary tissues. Here, to improve our understanding of the diverse roles miRs play in cardiovascular function and disease, we applied high-throughput methods to globally profile miR:target interactions in human heart tissues. We deciphered Ago2:RNA interactions using crosslinking immunoprecipitation coupled with high-throughput sequencing (HITS-CLIP) to generate the first transcriptome-wide map of miR targeting events in human myocardium, detecting 4000 cardiac Ago2 binding sites across >2200 target transcripts. Our initial exploration of this interactome revealed an abundance of miR target sites in gene coding regions, including several sites pointing to new miR-29 functions in regulating cardiomyocyte calcium, growth and metabolism. Also, we uncovered several clinically-relevant interactions involving common genetic variants that alter miR targeting events in cardiomyopathy-associated genes. Overall, these data provide a critical resource for bolstering translational miR research in heart, and likely beyond.
LinkOut: [PMID: 27418678]
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CLIP-seq Support 1 for dataset GSM714643 | |
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Method / RBP | HITS-CLIP / AGO2 |
Cell line / Condition | HEK293 / completeT1, repB |
Location of target site | ENST00000353383.1 | 3UTR | GACUUGCGGCCCCGGGUUG |
Tools used in this analysis | TargetScan, miRTarCLIP, and Piranha |
Article / Accession Series | PMID: 21572407 / GSE28865 |
CLIP-seq Viewer | Link |
MiRNA-Target Expression Profile | |||||||
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MiRNA-Target Expression Profile (TCGA) | |||||||
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77 hsa-miR-6751-3p Target Genes:
Functional analysis:
ID![]() |
Target | Description | Validation methods |
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Strong evidence | Less strong evidence | |||||||||||
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MIRT130738 | GATAD2B | GATA zinc finger domain containing 2B | ![]() |
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2 | 4 | ||||||
MIRT134924 | CCND2 | cyclin D2 | ![]() |
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2 | 2 | ||||||
MIRT273034 | ZBTB18 | zinc finger and BTB domain containing 18 | ![]() |
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2 | 2 | ||||||
MIRT276645 | KPNA3 | karyopherin subunit alpha 3 | ![]() |
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2 | 6 | ||||||
MIRT446531 | OAS2 | 2'-5'-oligoadenylate synthetase 2 | ![]() |
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2 | 2 | ||||||
MIRT456268 | TDRKH | tudor and KH domain containing | ![]() |
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2 | 12 | ||||||
MIRT494454 | BTG2 | BTG anti-proliferation factor 2 | ![]() |
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2 | 2 | ||||||
MIRT494965 | USP46 | ubiquitin specific peptidase 46 | ![]() |
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2 | 2 | ||||||
MIRT496689 | KREMEN1 | kringle containing transmembrane protein 1 | ![]() |
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2 | 2 | ||||||
MIRT496697 | RGS11 | regulator of G protein signaling 11 | ![]() |
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2 | 2 | ||||||
MIRT504376 | IRF4 | interferon regulatory factor 4 | ![]() |
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2 | 6 | ||||||
MIRT510980 | PFN2 | profilin 2 | ![]() |
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2 | 6 | ||||||
MIRT512548 | MFN2 | mitofusin 2 | ![]() |
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2 | 6 | ||||||
MIRT513639 | TP53INP2 | tumor protein p53 inducible nuclear protein 2 | ![]() |
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2 | 2 | ||||||
MIRT514016 | CAMSAP1 | calmodulin regulated spectrin associated protein 1 | ![]() |
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2 | 4 | ||||||
MIRT514074 | MTRNR2L6 | MT-RNR2-like 6 | ![]() |
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2 | 2 | ||||||
MIRT515300 | C15orf38-AP3S2 | C15orf38-AP3S2 readthrough | ![]() |
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2 | 4 | ||||||
MIRT517285 | AP3S2 | adaptor related protein complex 3 sigma 2 subunit | ![]() |
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2 | 4 | ||||||
MIRT519075 | KCNK6 | potassium two pore domain channel subfamily K member 6 | ![]() |
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2 | 2 | ||||||
MIRT520779 | TCF23 | transcription factor 23 | ![]() |
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2 | 2 | ||||||
MIRT522485 | MFSD9 | major facilitator superfamily domain containing 9 | ![]() |
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2 | 2 | ||||||
MIRT528856 | PKP1 | plakophilin 1 | ![]() |
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2 | 2 | ||||||
MIRT529081 | PATE2 | prostate and testis expressed 2 | ![]() |
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2 | 2 | ||||||
MIRT531209 | PLA2G4D | phospholipase A2 group IVD | ![]() |
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2 | 2 | ||||||
MIRT533988 | TAB3 | TGF-beta activated kinase 1 and MAP3K7 binding protein 3 | ![]() |
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2 | 2 | ||||||
MIRT537024 | GRIN2B | glutamate ionotropic receptor NMDA type subunit 2B | ![]() |
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2 | 2 | ||||||
MIRT537498 | FAM168B | family with sequence similarity 168 member B | ![]() |
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2 | 2 | ||||||
MIRT553125 | UBE2Z | ubiquitin conjugating enzyme E2 Z | ![]() |
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2 | 2 | ||||||
MIRT555591 | PIP5K1C | phosphatidylinositol-4-phosphate 5-kinase type 1 gamma | ![]() |
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2 | 2 | ||||||
MIRT556370 | LUZP1 | leucine zipper protein 1 | ![]() |
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2 | 2 | ||||||
MIRT569745 | C2orf71 | chromosome 2 open reading frame 71 | ![]() |
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2 | 2 | ||||||
MIRT570149 | DNAJC10 | DnaJ heat shock protein family (Hsp40) member C10 | ![]() |
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2 | 2 | ||||||
MIRT571243 | FADS6 | fatty acid desaturase 6 | ![]() |
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2 | 2 | ||||||
MIRT573065 | TRIB1 | tribbles pseudokinase 1 | ![]() |
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2 | 2 | ||||||
MIRT575533 | Map4 | microtubule-associated protein 4 | ![]() |
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2 | 2 | ||||||
MIRT575777 | Tnfrsf10b | tumor necrosis factor receptor superfamily, member 10b | ![]() |
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2 | 2 | ||||||
MIRT616558 | ZNF512B | zinc finger protein 512B | ![]() |
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2 | 2 | ||||||
MIRT624851 | ABI2 | abl interactor 2 | ![]() |
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2 | 2 | ||||||
MIRT630078 | GRWD1 | glutamate rich WD repeat containing 1 | ![]() |
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2 | 2 | ||||||
MIRT631479 | KLHL21 | kelch like family member 21 | ![]() |
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2 | 2 | ||||||
MIRT632173 | CCL22 | C-C motif chemokine ligand 22 | ![]() |
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2 | 2 | ||||||
MIRT638397 | QSOX2 | quiescin sulfhydryl oxidase 2 | ![]() |
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2 | 4 | ||||||
MIRT641192 | ISG20L2 | interferon stimulated exonuclease gene 20 like 2 | ![]() |
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2 | 2 | ||||||
MIRT642562 | TEX9 | testis expressed 9 | ![]() |
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2 | 2 | ||||||
MIRT642935 | KRTAP5-9 | keratin associated protein 5-9 | ![]() |
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2 | 2 | ||||||
MIRT649703 | ZNF175 | zinc finger protein 175 | ![]() |
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2 | 2 | ||||||
MIRT650437 | CPXM2 | carboxypeptidase X, M14 family member 2 | ![]() |
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2 | 2 | ||||||
MIRT652113 | TRUB2 | TruB pseudouridine synthase family member 2 | ![]() |
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2 | 2 | ||||||
MIRT652273 | TOMM20 | translocase of outer mitochondrial membrane 20 | ![]() |
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2 | 2 | ||||||
MIRT655215 | PFKM | phosphofructokinase, muscle | ![]() |
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2 | 2 | ||||||
MIRT682778 | ZNF852 | zinc finger protein 852 | ![]() |
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2 | 2 | ||||||
MIRT683001 | MUC20 | mucin 20, cell surface associated | ![]() |
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2 | 2 | ||||||
MIRT684320 | GTF3C4 | general transcription factor IIIC subunit 4 | ![]() |
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2 | 2 | ||||||
MIRT689435 | CYB561 | cytochrome b561 | ![]() |
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2 | 2 | ||||||
MIRT693847 | ZNF107 | zinc finger protein 107 | ![]() |
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2 | 2 | ||||||
MIRT696715 | TAX1BP3 | Tax1 binding protein 3 | ![]() |
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2 | 2 | ||||||
MIRT698597 | TEX261 | testis expressed 261 | ![]() |
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2 | 2 | ||||||
MIRT699973 | RREB1 | ras responsive element binding protein 1 | ![]() |
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2 | 2 | ||||||
MIRT703310 | GFPT1 | glutamine--fructose-6-phosphate transaminase 1 | ![]() |
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2 | 2 | ||||||
MIRT706796 | RAI1 | retinoic acid induced 1 | ![]() |
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2 | 2 | ||||||
MIRT709004 | CD109 | CD109 molecule | ![]() |
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2 | 2 | ||||||
MIRT709181 | TBC1D10B | TBC1 domain family member 10B | ![]() |
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2 | 2 | ||||||
MIRT709835 | PAQR7 | progestin and adipoQ receptor family member 7 | ![]() |
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2 | 2 | ||||||
MIRT711627 | CORO1C | coronin 1C | ![]() |
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2 | 2 | ||||||
MIRT712634 | RNF103-CHMP3 | RNF103-CHMP3 readthrough | ![]() |
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2 | 2 | ||||||
MIRT713694 | CYB5R4 | cytochrome b5 reductase 4 | ![]() |
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2 | 2 | ||||||
MIRT713752 | SLC9A8 | solute carrier family 9 member A8 | ![]() |
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2 | 2 | ||||||
MIRT714908 | CHMP3 | charged multivesicular body protein 3 | ![]() |
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2 | 2 | ||||||
MIRT716371 | CBLL1 | Cbl proto-oncogene like 1 | ![]() |
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2 | 2 | ||||||
MIRT718303 | XPOT | exportin for tRNA | ![]() |
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2 | 2 | ||||||
MIRT718713 | ANKRD18A | ankyrin repeat domain 18A | ![]() |
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2 | 2 | ||||||
MIRT718740 | ATP9A | ATPase phospholipid transporting 9A (putative) | ![]() |
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2 | 2 | ||||||
MIRT719441 | NPTX2 | neuronal pentraxin 2 | ![]() |
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2 | 2 | ||||||
MIRT720896 | OTUD4 | OTU deubiquitinase 4 | ![]() |
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2 | 2 | ||||||
MIRT722448 | RXFP4 | relaxin/insulin like family peptide receptor 4 | ![]() |
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2 | 2 | ||||||
MIRT723882 | VKORC1 | vitamin K epoxide reductase complex subunit 1 | ![]() |
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2 | 2 | ||||||
MIRT724586 | SYNJ2BP | synaptojanin 2 binding protein | ![]() |
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2 | 2 |
miRNA-Drug Resistance Associations | ||||||||||||||||||||||||||||||
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