Aliases hsa_circ_0048232 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr19:1417498-1422395:+
CircRNA type . Gene ID ENSG00000071626.16
Gene Name DAZAP1 Detection pipeline .
Sample Type K562; Gm12878
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_345776 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr19:1417498-1422395
CircRNA type . Gene ID NA
Gene Name NA Detection pipeline .
Sample Type K562;GM12878
Method for Estimation poly(A)-
Circular RNA status Experimented PCR Details Link to the detailed experimental procedure
Primers (Experimented)
Primers (Validated)
Forward Primer .
Reverse Primer .
Aliases hsa_circRNA_102402 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr19:1417498-1422395:+
CircRNA type exonic Gene ID ENSG00000071626.16
Gene Name DAZAP1 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_0048232 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr19:1417498-1422395:+
CircRNA type N/A Gene ID ENSG00000071626.16
Gene Name DAZAP1 Detection pipeline N/A
Sample Type Colorectal cancer
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 TCGGAGTGGTCACGGAGGTA
Reverse Primer CGAGACTGGTTGGTGGTTTTATC
Suggested primers
Product size Left primer Right primer Left GC Right GC Left TM Right TM Left pos Right pos Left size Right size
131 TAACCGGTTTGATGCTGTGG ATCTGCAGTACCCACCTGAC 50 55 58.471 59.095 147 277 20 20
192 GCAGAGCCAGGCAGAAATTT GGGCAGACACAACTTGAAGG 50 55 59.107 59.046 123 314 20 20
251 GCATCATTGGCTGGGTGTAT GACACAACTTGAAGGCCGAG 50 55 58.304 59.132 59 309 20 20
317 TCATTGGCTGGGTGTATGGG CCCTGCCCAGAAATCAGAAC 55 55 59.742 58.532 62 378 20 20
140 TACATTGAGCAGAGCCAGGC CCTTCCCCACCTACCTTGG 55 63.158 60.108 59.001 115 254 20 19
148 TGCTGTGGTATGTACTGGTGA ACAACTTGAAGGCCGAGGTC 47.619 55 58.747 60.25 159 306 21 20
153 CCGGTTTGATGCTGTGGTAT CTTGAAGGCCGAGGTCCTAG 50 60 58.25 59.538 150 302 20 20
159 GAGCAGAGCCAGGCAGAAA CCATCTGCAGTACCCACCT 57.895 57.895 60.003 58.699 121 279 19 19
111 AAAGAAATTTGGGGCACGAAG CGAGGTCCTAGAGCCCATC 42.857 63.158 57.615 58.653 183 293 21 19
114 TGATGCTGTGGTATGTACTGG TACCCACCTGACACCCCTT 47.619 57.895 57.458 59.759 156 269 21 19
122 CGGTTTGATGCTGTGGTATGTA CAGTACCCACCTGACACCC 45.455 63.158 58.733 59.322 151 272 22 19
224 ATCTATGACGCCGAGAAGCA ACACTTACTCTGTCCCCTGC 50 55 58.967 59.023 169 392 20 20
220 AGAGTTTGGGTTCGTGGGAA ATCTGCAGTACCCACCTGAC 50 55 59.159 59.095 58 277 20 20
166 CTTCCAGGTCACGGAGGTAG GACACAACTTGAAGGCCGAG 60 55 59.182 59.132 144 309 20 20
264 CTGTGCGAGAGTTTGGGTTC GGGCAGACACAACTTGAAGG 55 55 59.132 59.046 51 314 20 20
153 GGTCACGGAGGTAGTCATGA CTTGAAGGCCGAGGTCCTAG 55 60 58.529 59.538 150 302 20 20
209 TATGACGCCGAGAAGCAGAG TCCCCTGCCCAGAAATCAG 55 57.895 59.618 58.998 172 380 20 19
174 GCCACCCTCTCCTTCCAG ACAACTTGAAGGCCGAGGTC 66.667 55 59.006 60.25 133 306 18 20
108 CCAGGTCACGGAGGTAGTCA CCTTCCCCACCTACCTTGG 60 63.158 60.611 59.001 147 254 20 19
137 CCTTCCAGGTCACGGAGG CCATCTGCAGTACCCACCT 66.667 57.895 59.018 58.699 143 279 18 19
122 GTCACGGAGGTAGTCATGATCT CAGTACCCACCTGACACCC 50 63.158 59.047 59.322 151 272 22 19
105 GACGCCACCCTCTCCTTC TCGTGCTCCAGTCAAGACC 66.667 57.895 59.42 59.334 130 234 18 19
224 ATCTATGACGCCGAGAAGCA ACACTTACTCTGTCCCCTGC 50 55 58.967 59.023 169 392 20 20
264 CTGTGCGAGAGTTTGGGTTC GGGCAGACACAACTTGAAGG 55 55 59.132 59.046 51 314 20 20
220 AGAGTTTGGGTTCGTGGGAA ATCTGCAGTACCCACCTGAC 50 55 59.159 59.095 58 277 20 20
166 CTTCCAGGTCACGGAGGTAG GACACAACTTGAAGGCCGAG 60 55 59.182 59.132 144 309 20 20
209 TATGACGCCGAGAAGCAGAG TCCCCTGCCCAGAAATCAG 55 57.895 59.618 58.998 172 380 20 19
153 GGTCACGGAGGTAGTCATGA CTTGAAGGCCGAGGTCCTAG 55 60 58.529 59.538 150 302 20 20
108 CCAGGTCACGGAGGTAGTCA CCTTCCCCACCTACCTTGG 60 63.158 60.611 59.001 147 254 20 19
174 GCCACCCTCTCCTTCCAG ACAACTTGAAGGCCGAGGTC 66.667 55 59.006 60.25 133 306 18 20
137 CCTTCCAGGTCACGGAGG CCATCTGCAGTACCCACCT 66.667 57.895 59.018 58.699 143 279 18 19
105 GACGCCACCCTCTCCTTC TCGTGCTCCAGTCAAGACC 66.667 57.895 59.42 59.334 130 234 18 19
122 GTCACGGAGGTAGTCATGATCT CAGTACCCACCTGACACCC 50 63.158 59.047 59.322 151 272 22 19
264 CTGTGCGAGAGTTTGGGTTC GGGCAGACACAACTTGAAGG 55 55 59.132 59.046 51 314 20 20
224 ATCTATGACGCCGAGAAGCA ACACTTACTCTGTCCCCTGC 50 55 58.967 59.023 169 392 20 20
220 AGAGTTTGGGTTCGTGGGAA ATCTGCAGTACCCACCTGAC 50 55 59.159 59.095 58 277 20 20
166 CTTCCAGGTCACGGAGGTAG GACACAACTTGAAGGCCGAG 60 55 59.182 59.132 144 309 20 20
153 GGTCACGGAGGTAGTCATGA CTTGAAGGCCGAGGTCCTAG 55 60 58.529 59.538 150 302 20 20
137 CCTTCCAGGTCACGGAGG CCATCTGCAGTACCCACCT 66.667 57.895 59.018 58.699 143 279 18 19
174 GCCACCCTCTCCTTCCAG ACAACTTGAAGGCCGAGGTC 66.667 55 59.006 60.25 133 306 18 20
209 TATGACGCCGAGAAGCAGAG TCCCCTGCCCAGAAATCAG 55 57.895 59.618 58.998 172 380 20 19
105 GACGCCACCCTCTCCTTC TCGTGCTCCAGTCAAGACC 66.667 57.895 59.42 59.334 130 234 18 19
108 CCAGGTCACGGAGGTAGTCA CCTTCCCCACCTACCTTGG 60 63.158 60.611 59.001 147 254 20 19
122 GTCACGGAGGTAGTCATGATCT CAGTACCCACCTGACACCC 50 63.158 59.047 59.322 151 272 22 19