Aliases hsa_circ_0074930 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr5:168233450-168250336:-
CircRNA type . Gene ID ENSG00000145934.16
Gene Name TENM2 Detection pipeline .
Sample Type 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_51093 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr5:168233450-168250336
CircRNA type . Gene ID NA
Gene Name NA Detection pipeline .
Sample Type SH-SY5Y_D0_exp2;A549;Thyroid
Method for Estimation Ribo-;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_104004 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr5:168233450-168250336:-
CircRNA type exonic Gene ID ENSG00000145934.16
Gene Name TENM2 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_0074930 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr5:168233450-168250336:-
CircRNA type N/A Gene ID ENSG00000145934.16
Gene Name TENM2 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 GGAAAGGGCTTGATGGAGATT
Reverse Primer TCGCAGTACAGGTGGTTGGA
Suggested primers
Product size Left primer Right primer Left GC Right GC Left TM Right TM Left pos Right pos Left size Right size
346 ATCAAGCCCTTTCCTCGACA CAACATCAGTCGCATCCTGG 50 55 59.016 58.988 39 384 20 20
140 GAAGGGCAGGAGATGGAGTT GGCAGATGGTTCCGACATTC 55 55 59.085 58.983 90 229 20 20
164 CTGGGCTTCGGAGGAATTTG CAACCACATGCCGAAGATCC 55 55 58.902 59.265 191 354 20 20
206 CTGTGGAGCCAAGACACAAC ATGCCGAAGATCCGAACTCT 55 50 59.053 58.885 142 347 20 20
198 GATGGAGTTGGCATTGCAGG TTTTCTCCCTACCTCACGCC 55 55 59.541 59.388 101 298 20 20
172 ACGATGTTATTGCTGCACGT GACTAGGCAGATGGTTCCGA 45 55 58.561 58.888 63 234 20 20
116 CCAAGACACAACGGTCAACT TCTACGCTGCTTGTCAAACC 50 50 58.336 58.491 150 265 20 20
158 GAGTTGGCATTGCAGGATGG ACGCTGCTTGTCAAACCTAC 55 50 59.541 58.773 105 262 20 20
113 GGAGATGGAGTTGGCATTGC CAAATTCCTCCGAAGCCCAG 55 55 59.257 58.902 98 210 20 20
174 GCAGGAGATGGAGTTGGCAT CACTCTACGCTGCTTGTCAA 55 50 60.107 58.217 95 268 20 20
174 ATGTCAGTGTCAGGAGCTGC CCGAAGATCCGAACTCTGTG 55 55 60.037 58.085 171 344 20 20
323 AAGCCCTTTCCTCGACAGTC TCACCAGCTTCAACCACATG 55 50 59.678 58.392 42 364 20 20
261 AGTCCACGATGTTATTGCTGC AAGTCTGTGCATCTCTCCCA 47.619 50 58.99 58.351 58 318 21 20
140 GAAGGGCAGGAGATGGAGTT GGCAGATGGTTCCGACATTC 55 55 59.085 58.983 90 229 20 20
346 ATCAAGCCCTTTCCTCGACA CAACATCAGTCGCATCCTGG 50 55 59.016 58.988 39 384 20 20
206 CTGTGGAGCCAAGACACAAC ATGCCGAAGATCCGAACTCT 55 50 59.053 58.885 142 347 20 20
164 CTGGGCTTCGGAGGAATTTG CAACCACATGCCGAAGATCC 55 55 58.902 59.265 191 354 20 20
172 ACGATGTTATTGCTGCACGT GACTAGGCAGATGGTTCCGA 45 55 58.561 58.888 63 234 20 20
113 GGAGATGGAGTTGGCATTGC CAAATTCCTCCGAAGCCCAG 55 55 59.257 58.902 98 210 20 20
158 GAGTTGGCATTGCAGGATGG ACGCTGCTTGTCAAACCTAC 55 50 59.541 58.773 105 262 20 20
198 GATGGAGTTGGCATTGCAGG TTTTCTCCCTACCTCACGCC 55 55 59.541 59.388 101 298 20 20
116 CCAAGACACAACGGTCAACT TCTACGCTGCTTGTCAAACC 50 50 58.336 58.491 150 265 20 20
174 ATGTCAGTGTCAGGAGCTGC CCGAAGATCCGAACTCTGTG 55 55 60.037 58.085 171 344 20 20
174 GCAGGAGATGGAGTTGGCAT CACTCTACGCTGCTTGTCAA 55 50 60.107 58.217 95 268 20 20
261 AGTCCACGATGTTATTGCTGC AAGTCTGTGCATCTCTCCCA 47.619 50 58.99 58.351 58 318 21 20
323 AAGCCCTTTCCTCGACAGTC TCACCAGCTTCAACCACATG 55 50 59.678 58.392 42 364 20 20
346 ATCAAGCCCTTTCCTCGACA CAACATCAGTCGCATCCTGG 50 55 59.016 58.988 39 384 20 20
206 CTGTGGAGCCAAGACACAAC ATGCCGAAGATCCGAACTCT 55 50 59.053 58.885 142 347 20 20
140 GAAGGGCAGGAGATGGAGTT GGCAGATGGTTCCGACATTC 55 55 59.085 58.983 90 229 20 20
164 CTGGGCTTCGGAGGAATTTG CAACCACATGCCGAAGATCC 55 55 58.902 59.265 191 354 20 20
113 GGAGATGGAGTTGGCATTGC CAAATTCCTCCGAAGCCCAG 55 55 59.257 58.902 98 210 20 20
158 GAGTTGGCATTGCAGGATGG ACGCTGCTTGTCAAACCTAC 55 50 59.541 58.773 105 262 20 20
172 ACGATGTTATTGCTGCACGT GACTAGGCAGATGGTTCCGA 45 55 58.561 58.888 63 234 20 20
198 GATGGAGTTGGCATTGCAGG TTTTCTCCCTACCTCACGCC 55 55 59.541 59.388 101 298 20 20
116 CCAAGACACAACGGTCAACT TCTACGCTGCTTGTCAAACC 50 50 58.336 58.491 150 265 20 20
323 AAGCCCTTTCCTCGACAGTC TCACCAGCTTCAACCACATG 55 50 59.678 58.392 42 364 20 20
174 ATGTCAGTGTCAGGAGCTGC CCGAAGATCCGAACTCTGTG 55 55 60.037 58.085 171 344 20 20
261 AGTCCACGATGTTATTGCTGC AAGTCTGTGCATCTCTCCCA 47.619 50 58.99 58.351 58 318 21 20
174 GCAGGAGATGGAGTTGGCAT CACTCTACGCTGCTTGTCAA 55 50 60.107 58.217 95 268 20 20
346 ATCAAGCCCTTTCCTCGACA CAACATCAGTCGCATCCTGG 50 55 59.016 58.988 39 384 20 20
140 GAAGGGCAGGAGATGGAGTT GGCAGATGGTTCCGACATTC 55 55 59.085 58.983 90 229 20 20
206 CTGTGGAGCCAAGACACAAC ATGCCGAAGATCCGAACTCT 55 50 59.053 58.885 142 347 20 20
113 GGAGATGGAGTTGGCATTGC CAAATTCCTCCGAAGCCCAG 55 55 59.257 58.902 98 210 20 20
164 CTGGGCTTCGGAGGAATTTG CAACCACATGCCGAAGATCC 55 55 58.902 59.265 191 354 20 20
158 GAGTTGGCATTGCAGGATGG ACGCTGCTTGTCAAACCTAC 55 50 59.541 58.773 105 262 20 20
172 ACGATGTTATTGCTGCACGT GACTAGGCAGATGGTTCCGA 45 55 58.561 58.888 63 234 20 20
198 GATGGAGTTGGCATTGCAGG TTTTCTCCCTACCTCACGCC 55 55 59.541 59.388 101 298 20 20
116 CCAAGACACAACGGTCAACT TCTACGCTGCTTGTCAAACC 50 50 58.336 58.491 150 265 20 20
174 GCAGGAGATGGAGTTGGCAT CACTCTACGCTGCTTGTCAA 55 50 60.107 58.217 95 268 20 20
174 ATGTCAGTGTCAGGAGCTGC CCGAAGATCCGAACTCTGTG 55 55 60.037 58.085 171 344 20 20
323 AAGCCCTTTCCTCGACAGTC TCACCAGCTTCAACCACATG 55 50 59.678 58.392 42 364 20 20
261 AGTCCACGATGTTATTGCTGC AAGTCTGTGCATCTCTCCCA 47.619 50 58.99 58.351 58 318 21 20