Aliases hsa_circ_0030045 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr13:41367293-41373451:+
CircRNA type . Gene ID ENSG00000102743.10
Gene Name SLC25A15 Detection pipeline .
Sample Type Huvec; Helas3
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_10677 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr13:41367293-41373451
CircRNA type . Gene ID NA
Gene Name NA Detection pipeline .
Sample Type Liver_N13;HeLa_S3;Liver_T12;Liver_T14;PA1;Liver_N17;Liver_N19
Method for Estimation Ribo-;poly(A)-;RNaseR
Circular RNA status Experimented PCR Details Link to the detailed experimental procedure
Primers (Experimented)
Primers (Validated)
Forward Primer .
Reverse Primer .
Aliases hsa_circRNA_101253 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr13:41367293-41373451:+
CircRNA type exonic Gene ID ENSG00000102743.10
Gene Name SLC25A15 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_0030045 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr13:41367293-41373451:+
CircRNA type N/A Gene ID ENSG00000102743.10
Gene Name SLC25A15 Detection pipeline N/A
Sample Type Tuberculosis
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 TCCTCTTCATGTGCTACGGC
Reverse Primer TTGTGGAAGGCAGCTCTCTG
Suggested primers
Product size Left primer Right primer Left GC Right GC Left TM Right TM Left pos Right pos Left size Right size
122 GGATTGGACAAGCAGGCAAA AGCCTGGATAGCAGGATTGG 50 55 59.032 59.23 174 295 20 20
127 GTCCAGCACTAATCGCCAAC AGGCACCACATATCCCTCAG 55 55 59.273 58.865 88 214 20 20
108 GGAAAGTGGCTGGATTGGAC ATGTTTGCCCACTCTTCTGC 55 50 58.823 58.749 163 270 20 20
116 GCCAACATCGCTGAGAACTC GACAGGCACCACATATCCCT 55 55 59.276 59.16 102 217 20 20
136 GTCCTCTTCATGTGCTACGG TCTTCTGCTGGTCTTGTGGA 55 50 58.072 58.576 123 258 20 20
130 ACTAATCGCCAACATCGCTG AGCTTATGACAGGCACCACA 50 50 58.71 59.308 95 224 20 20
172 AGCACTAATCGCCAACATCG CCCACTCTTCTGCTGGTCTT 50 55 58.71 59.31 92 263 20 20
196 GCTGCCTGAAGACTTACTCC TCTGGAGCTTATGACAGGCA 55 50 57.983 58.428 34 229 20 20
109 AGCTGAGGGATATGTGGTGC AATGGCAGCCTGGATAGCAG 55 55 59.528 60.179 193 301 20 20
148 ATCGCCAACATCGCTGAGAA CTTGTGGAAGGCAGCTCTCT 50 55 60.108 59.676 99 246 20 20
220 TGCCTGAAGACTTACTCCCAG TCTGCTGGTCTTGTGGAAGG 52.381 55 59.097 59.602 36 255 21 20
132 AAGTGGCTGGATTGGACAAG GCAGCCTGGATAGCAGGAT 50 57.895 58.085 59.24 166 297 20 19
122 GGATTGGACAAGCAGGCAAA AGCCTGGATAGCAGGATTGG 50 55 59.032 59.23 174 295 20 20
127 GTCCAGCACTAATCGCCAAC AGGCACCACATATCCCTCAG 55 55 59.273 58.865 88 214 20 20
108 GGAAAGTGGCTGGATTGGAC ATGTTTGCCCACTCTTCTGC 55 50 58.823 58.749 163 270 20 20
116 GCCAACATCGCTGAGAACTC GACAGGCACCACATATCCCT 55 55 59.276 59.16 102 217 20 20
130 ACTAATCGCCAACATCGCTG AGCTTATGACAGGCACCACA 50 50 58.71 59.308 95 224 20 20
172 AGCACTAATCGCCAACATCG CCCACTCTTCTGCTGGTCTT 50 55 58.71 59.31 92 263 20 20
136 GTCCTCTTCATGTGCTACGG TCTTCTGCTGGTCTTGTGGA 55 50 58.072 58.576 123 258 20 20
196 GCTGCCTGAAGACTTACTCC TCTGGAGCTTATGACAGGCA 55 50 57.983 58.428 34 229 20 20
148 ATCGCCAACATCGCTGAGAA CTTGTGGAAGGCAGCTCTCT 50 55 60.108 59.676 99 246 20 20
109 AGCTGAGGGATATGTGGTGC AATGGCAGCCTGGATAGCAG 55 55 59.528 60.179 193 301 20 20
220 TGCCTGAAGACTTACTCCCAG TCTGCTGGTCTTGTGGAAGG 52.381 55 59.097 59.602 36 255 21 20
132 AAGTGGCTGGATTGGACAAG GCAGCCTGGATAGCAGGAT 50 57.895 58.085 59.24 166 297 20 19
127 GTCCAGCACTAATCGCCAAC AGGCACCACATATCCCTCAG 55 55 59.273 58.865 88 214 20 20
122 GGATTGGACAAGCAGGCAAA AGCCTGGATAGCAGGATTGG 50 55 59.032 59.23 174 295 20 20
116 GCCAACATCGCTGAGAACTC GACAGGCACCACATATCCCT 55 55 59.276 59.16 102 217 20 20
130 ACTAATCGCCAACATCGCTG AGCTTATGACAGGCACCACA 50 50 58.71 59.308 95 224 20 20
108 GGAAAGTGGCTGGATTGGAC ATGTTTGCCCACTCTTCTGC 55 50 58.823 58.749 163 270 20 20
172 AGCACTAATCGCCAACATCG CCCACTCTTCTGCTGGTCTT 50 55 58.71 59.31 92 263 20 20
196 GCTGCCTGAAGACTTACTCC TCTGGAGCTTATGACAGGCA 55 50 57.983 58.428 34 229 20 20
136 GTCCTCTTCATGTGCTACGG TCTTCTGCTGGTCTTGTGGA 55 50 58.072 58.576 123 258 20 20
109 AGCTGAGGGATATGTGGTGC AATGGCAGCCTGGATAGCAG 55 55 59.528 60.179 193 301 20 20
220 TGCCTGAAGACTTACTCCCAG TCTGCTGGTCTTGTGGAAGG 52.381 55 59.097 59.602 36 255 21 20
132 AAGTGGCTGGATTGGACAAG GCAGCCTGGATAGCAGGAT 50 57.895 58.085 59.24 166 297 20 19
148 ATCGCCAACATCGCTGAGAA CTTGTGGAAGGCAGCTCTCT 50 55 60.108 59.676 99 246 20 20
122 GGATTGGACAAGCAGGCAAA AGCCTGGATAGCAGGATTGG 50 55 59.032 59.23 174 295 20 20
127 GTCCAGCACTAATCGCCAAC AGGCACCACATATCCCTCAG 55 55 59.273 58.865 88 214 20 20
116 GCCAACATCGCTGAGAACTC GACAGGCACCACATATCCCT 55 55 59.276 59.16 102 217 20 20
108 GGAAAGTGGCTGGATTGGAC ATGTTTGCCCACTCTTCTGC 55 50 58.823 58.749 163 270 20 20
130 ACTAATCGCCAACATCGCTG AGCTTATGACAGGCACCACA 50 50 58.71 59.308 95 224 20 20
136 GTCCTCTTCATGTGCTACGG TCTTCTGCTGGTCTTGTGGA 55 50 58.072 58.576 123 258 20 20
196 GCTGCCTGAAGACTTACTCC TCTGGAGCTTATGACAGGCA 55 50 57.983 58.428 34 229 20 20
220 TGCCTGAAGACTTACTCCCAG TCTGCTGGTCTTGTGGAAGG 52.381 55 59.097 59.602 36 255 21 20
109 AGCTGAGGGATATGTGGTGC AATGGCAGCCTGGATAGCAG 55 55 59.528 60.179 193 301 20 20
172 AGCACTAATCGCCAACATCG CCCACTCTTCTGCTGGTCTT 50 55 58.71 59.31 92 263 20 20
148 ATCGCCAACATCGCTGAGAA CTTGTGGAAGGCAGCTCTCT 50 55 60.108 59.676 99 246 20 20
132 AAGTGGCTGGATTGGACAAG GCAGCCTGGATAGCAGGAT 50 57.895 58.085 59.24 166 297 20 19