Aliases hsa_circ_0017446 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr10:1125950-1132297:+
CircRNA type . Gene ID ENSG00000047056.15
Gene Name WDR37 Detection pipeline .
Sample Type Nhek; Hepg2; Sknshra
Method for Estimation RNA-Seq with Rnase R resistance
Circular RNA status Experimented PCR Details Link to the detailed experimental procedure
Primers (Experimented)
Primers (Validated)
Forward Primer .
Reverse Primer .
Aliases HSA_CIRCpedia_385 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr10:1125950-1132297
CircRNA type . Gene ID NA
Gene Name NA Detection pipeline .
Sample Type GM12878;PA1;HepG2;K562;Liver_N15;AG04450;Cerebellum;Occipital;Temporal;Parietal;Liver_N7;Hs68;Liver_N17
Method for Estimation poly(A)-;RNaseR;Ribo-
Circular RNA status Experimented PCR Details Link to the detailed experimental procedure
Primers (Experimented)
Primers (Validated)
Forward Primer .
Reverse Primer .
Aliases hsa_circRNA_100527 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr10:1125950-1132297:+
CircRNA type exonic Gene ID ENSG00000047056.15
Gene Name WDR37 Detection pipeline n/a
Sample Type Esophageal cancer
Method for Estimation .
Circular RNA status Experimented PCR Details Link to the detailed experimental procedure
Primers (Experimented)
Primers (Validated)
Forward Primer .
Reverse Primer .
Aliases hsa_circ_0017446 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr10:1125950-1132297:+
CircRNA type N/A Gene ID ENSG00000047056.15
Gene Name WDR37 Detection pipeline N/A
Sample Type Acute Myeloid Leukemia
Method for Estimation Microarray and Quantitative PCR
Circular RNA status Validated PCR Details Link to the detailed experimental procedure
Primers (Experimented)
Primers (Validated)
Forward Primer GGAGCATAGAGACAGGGA
Reverse Primer GGCTTTTGTTTTGAGTTG
Suggested primers
Product size Left primer Right primer Left GC Right GC Left TM Right TM Left pos Right pos Left size Right size
120 AGTGCCTAGTCAAGTACGCA GTTGGCCCTTACTCAGCTCT 50 55 58.746 59.384 164 283 20 20
118 CTAGTCAAGTACGCAGGCCA TGAGTTGGCCCTTACTCAGC 55 55 59.469 59.675 169 286 20 20
118 GCATAGAGACAGGGAAGTGC TCTGCTCCATCAATCGCTTG 55 50 58.053 58.34 149 266 20 20
114 TGTGGAGCATAGAGACAGGG CAATCGCTTGTCCTTCAGCA 55 50 58.511 58.841 143 256 20 20
139 CGTGGGCTCAGTACGTAGAG GCAGGACAAGACTTTCATGGG 60 52.381 59.622 59.185 189 327 20 21
127 CAGATCACACGGCTTTGCT GCTTGTCCTTCAGCAGCTAA 52.632 50 58.452 58.186 125 251 19 20
104 TGGAGCATAGAGACAGGGAAG TGTCCTTCAGCAGCTAAACG 52.381 50 58.607 58.204 145 248 21 20
110 CACGTGGGCTCAGTACGTA CCTTTTGTTTTGAGTTGGCCC 57.895 47.619 59.122 58.439 187 296 19 21
101 TGGGCTCAGTACGTAGAGAAA TGTTTTGAGTTGGCCCTTACTC 47.619 45.455 58.201 58.781 191 291 21 22
188 AGTGGTCGTGTAATTTCCCATTT CTCTACGTACTGAGCCCACG 39.13 60 58.596 59.622 21 208 23 20
120 AGTGCCTAGTCAAGTACGCA GTTGGCCCTTACTCAGCTCT 50 55 58.746 59.384 164 283 20 20
114 TGTGGAGCATAGAGACAGGG CAATCGCTTGTCCTTCAGCA 55 50 58.511 58.841 143 256 20 20
118 CTAGTCAAGTACGCAGGCCA TGAGTTGGCCCTTACTCAGC 55 55 59.469 59.675 169 286 20 20
118 GCATAGAGACAGGGAAGTGC TCTGCTCCATCAATCGCTTG 55 50 58.053 58.34 149 266 20 20
104 TGGAGCATAGAGACAGGGAAG TGTCCTTCAGCAGCTAAACG 52.381 50 58.607 58.204 145 248 21 20
139 CGTGGGCTCAGTACGTAGAG GCAGGACAAGACTTTCATGGG 60 52.381 59.622 59.185 189 327 20 21
110 CACGTGGGCTCAGTACGTA CCTTTTGTTTTGAGTTGGCCC 57.895 47.619 59.122 58.439 187 296 19 21
101 TGGGCTCAGTACGTAGAGAAA TGTTTTGAGTTGGCCCTTACTC 47.619 45.455 58.201 58.781 191 291 21 22
127 CAGATCACACGGCTTTGCT GCTTGTCCTTCAGCAGCTAA 52.632 50 58.452 58.186 125 251 19 20
188 AGTGGTCGTGTAATTTCCCATTT CTCTACGTACTGAGCCCACG 39.13 60 58.596 59.622 21 208 23 20
120 AGTGCCTAGTCAAGTACGCA GTTGGCCCTTACTCAGCTCT 50 55 58.746 59.384 164 283 20 20
114 TGTGGAGCATAGAGACAGGG CAATCGCTTGTCCTTCAGCA 55 50 58.511 58.841 143 256 20 20
118 GCATAGAGACAGGGAAGTGC TCTGCTCCATCAATCGCTTG 55 50 58.053 58.34 149 266 20 20
139 CGTGGGCTCAGTACGTAGAG GCAGGACAAGACTTTCATGGG 60 52.381 59.622 59.185 189 327 20 21
118 CTAGTCAAGTACGCAGGCCA TGAGTTGGCCCTTACTCAGC 55 55 59.469 59.675 169 286 20 20
104 TGGAGCATAGAGACAGGGAAG TGTCCTTCAGCAGCTAAACG 52.381 50 58.607 58.204 145 248 21 20
110 CACGTGGGCTCAGTACGTA CCTTTTGTTTTGAGTTGGCCC 57.895 47.619 59.122 58.439 187 296 19 21
101 TGGGCTCAGTACGTAGAGAAA TGTTTTGAGTTGGCCCTTACTC 47.619 45.455 58.201 58.781 191 291 21 22
127 CAGATCACACGGCTTTGCT GCTTGTCCTTCAGCAGCTAA 52.632 50 58.452 58.186 125 251 19 20
188 AGTGGTCGTGTAATTTCCCATTT CTCTACGTACTGAGCCCACG 39.13 60 58.596 59.622 21 208 23 20
120 AGTGCCTAGTCAAGTACGCA GTTGGCCCTTACTCAGCTCT 50 55 58.746 59.384 164 283 20 20
114 TGTGGAGCATAGAGACAGGG CAATCGCTTGTCCTTCAGCA 55 50 58.511 58.841 143 256 20 20
118 CTAGTCAAGTACGCAGGCCA TGAGTTGGCCCTTACTCAGC 55 55 59.469 59.675 169 286 20 20
139 CGTGGGCTCAGTACGTAGAG GCAGGACAAGACTTTCATGGG 60 52.381 59.622 59.185 189 327 20 21
118 GCATAGAGACAGGGAAGTGC TCTGCTCCATCAATCGCTTG 55 50 58.053 58.34 149 266 20 20
104 TGGAGCATAGAGACAGGGAAG TGTCCTTCAGCAGCTAAACG 52.381 50 58.607 58.204 145 248 21 20
127 CAGATCACACGGCTTTGCT GCTTGTCCTTCAGCAGCTAA 52.632 50 58.452 58.186 125 251 19 20
110 CACGTGGGCTCAGTACGTA CCTTTTGTTTTGAGTTGGCCC 57.895 47.619 59.122 58.439 187 296 19 21
101 TGGGCTCAGTACGTAGAGAAA TGTTTTGAGTTGGCCCTTACTC 47.619 45.455 58.201 58.781 191 291 21 22
188 AGTGGTCGTGTAATTTCCCATTT CTCTACGTACTGAGCCCACG 39.13 60 58.596 59.622 21 208 23 20