Aliases hsa_circ_0055377 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr2:80772106-80783018:+
CircRNA type . Gene ID ENSG00000066032.14
Gene Name CTNNA2 Detection pipeline .
Sample Type 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_42389 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr2:80772106-80783018
CircRNA type . Gene ID NA
Gene Name NA Detection pipeline .
Sample Type Parietal;Temporal;GM12878;Diencephalon
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_102771 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr2:80772106-80783018:+
CircRNA type exonic Gene ID ENSG00000066032.14
Gene Name CTNNA2 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_circRNA_102771/hsa_circ_0055377 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr2:80772106-80783018:+
CircRNA type N/A Gene ID ENSG00000066032.14
Gene Name CTNNA2 Detection pipeline N/A
Sample Type Thoracic Aortic Dissection
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 CGAACTAATTTCACCCCTTCTTCA
Reverse Primer ACATCATCAATGCTGAGATGGAG
Suggested primers
Product size Left primer Right primer Left GC Right GC Left TM Right TM Left pos Right pos Left size Right size
348 AGTGTGTGATAGCCCTCCAA AGAGAAGGAAAAGGAGGGGC 50 55 58.343 59.004 26 373 20 20
274 GGCAGCTCGAGTCATACACA AAGGAAAAGGAGGGGCACAA 55 50 59.827 59.439 96 369 20 20
214 ATGTGGACACTCTGGACCG TGGCTGCCATCCGAACTAAT 57.895 50 59.025 59.454 53 266 19 20
191 ACTGAGAAGGTGTTGGAAGCT GCTGGAGTGGAGAAGGTCA 47.619 57.895 59.229 58.634 157 347 21 19
153 GGAGAACTATGAAGCTGGGGT ACAGGCTGTCAATCTGGGTG 52.381 55 59.159 59.963 132 284 21 20
201 AAGAGGGCGATGTGGACAC CACCCCTTCTTCATTGTTGGA 57.895 47.619 59.703 58.125 44 244 19 21
222 GACACTCTGGACCGGACTG CTGTCAATCTGGGTGGCTG 63.158 57.895 59.413 58.136 58 279 19 19
171 CCAAGAGGGCGATGTGGA CCAAATTGGCAACCTGTTTCAG 61.111 45.455 59.01 58.867 42 212 18 22
217 GGGCGATGTGGACACTCT GCTGCCATCCGAACTAATTTC 61.111 47.619 59.018 57.66 48 264 18 21
238 CGGGCAGCTCGAGTCATA TCACTGACAGGCTTTTGAAACA 61.111 40.909 58.88 58.648 94 331 18 22
128 TGAGAAGGTGTTGGAAGCTACA ACACAGGCTGTCAATCTGG 45.455 52.632 59.296 57.361 159 286 22 19
178 CAGCTCGAGTCATACACATCA CAATCTGGGTGGCTGCCA 47.619 61.111 57.573 59.964 98 275 21 18
274 GGCAGCTCGAGTCATACACA AAGGAAAAGGAGGGGCACAA 55 50 59.827 59.439 96 369 20 20
348 AGTGTGTGATAGCCCTCCAA AGAGAAGGAAAAGGAGGGGC 50 55 58.343 59.004 26 373 20 20
214 ATGTGGACACTCTGGACCG TGGCTGCCATCCGAACTAAT 57.895 50 59.025 59.454 53 266 19 20
153 GGAGAACTATGAAGCTGGGGT ACAGGCTGTCAATCTGGGTG 52.381 55 59.159 59.963 132 284 21 20
222 GACACTCTGGACCGGACTG CTGTCAATCTGGGTGGCTG 63.158 57.895 59.413 58.136 58 279 19 19
201 AAGAGGGCGATGTGGACAC CACCCCTTCTTCATTGTTGGA 57.895 47.619 59.703 58.125 44 244 19 21
191 ACTGAGAAGGTGTTGGAAGCT GCTGGAGTGGAGAAGGTCA 47.619 57.895 59.229 58.634 157 347 21 19
171 CCAAGAGGGCGATGTGGA CCAAATTGGCAACCTGTTTCAG 61.111 45.455 59.01 58.867 42 212 18 22
128 TGAGAAGGTGTTGGAAGCTACA ACACAGGCTGTCAATCTGG 45.455 52.632 59.296 57.361 159 286 22 19
238 CGGGCAGCTCGAGTCATA TCACTGACAGGCTTTTGAAACA 61.111 40.909 58.88 58.648 94 331 18 22
217 GGGCGATGTGGACACTCT GCTGCCATCCGAACTAATTTC 61.111 47.619 59.018 57.66 48 264 18 21
178 CAGCTCGAGTCATACACATCA CAATCTGGGTGGCTGCCA 47.619 61.111 57.573 59.964 98 275 21 18
348 AGTGTGTGATAGCCCTCCAA AGAGAAGGAAAAGGAGGGGC 50 55 58.343 59.004 26 373 20 20
274 GGCAGCTCGAGTCATACACA AAGGAAAAGGAGGGGCACAA 55 50 59.827 59.439 96 369 20 20
214 ATGTGGACACTCTGGACCG TGGCTGCCATCCGAACTAAT 57.895 50 59.025 59.454 53 266 19 20
153 GGAGAACTATGAAGCTGGGGT ACAGGCTGTCAATCTGGGTG 52.381 55 59.159 59.963 132 284 21 20
191 ACTGAGAAGGTGTTGGAAGCT GCTGGAGTGGAGAAGGTCA 47.619 57.895 59.229 58.634 157 347 21 19
201 AAGAGGGCGATGTGGACAC CACCCCTTCTTCATTGTTGGA 57.895 47.619 59.703 58.125 44 244 19 21
222 GACACTCTGGACCGGACTG CTGTCAATCTGGGTGGCTG 63.158 57.895 59.413 58.136 58 279 19 19
171 CCAAGAGGGCGATGTGGA CCAAATTGGCAACCTGTTTCAG 61.111 45.455 59.01 58.867 42 212 18 22
238 CGGGCAGCTCGAGTCATA TCACTGACAGGCTTTTGAAACA 61.111 40.909 58.88 58.648 94 331 18 22
217 GGGCGATGTGGACACTCT GCTGCCATCCGAACTAATTTC 61.111 47.619 59.018 57.66 48 264 18 21
128 TGAGAAGGTGTTGGAAGCTACA ACACAGGCTGTCAATCTGG 45.455 52.632 59.296 57.361 159 286 22 19
178 CAGCTCGAGTCATACACATCA CAATCTGGGTGGCTGCCA 47.619 61.111 57.573 59.964 98 275 21 18
274 GGCAGCTCGAGTCATACACA AAGGAAAAGGAGGGGCACAA 55 50 59.827 59.439 96 369 20 20
348 AGTGTGTGATAGCCCTCCAA AGAGAAGGAAAAGGAGGGGC 50 55 58.343 59.004 26 373 20 20
214 ATGTGGACACTCTGGACCG TGGCTGCCATCCGAACTAAT 57.895 50 59.025 59.454 53 266 19 20
153 GGAGAACTATGAAGCTGGGGT ACAGGCTGTCAATCTGGGTG 52.381 55 59.159 59.963 132 284 21 20
191 ACTGAGAAGGTGTTGGAAGCT GCTGGAGTGGAGAAGGTCA 47.619 57.895 59.229 58.634 157 347 21 19
222 GACACTCTGGACCGGACTG CTGTCAATCTGGGTGGCTG 63.158 57.895 59.413 58.136 58 279 19 19
201 AAGAGGGCGATGTGGACAC CACCCCTTCTTCATTGTTGGA 57.895 47.619 59.703 58.125 44 244 19 21
171 CCAAGAGGGCGATGTGGA CCAAATTGGCAACCTGTTTCAG 61.111 45.455 59.01 58.867 42 212 18 22
217 GGGCGATGTGGACACTCT GCTGCCATCCGAACTAATTTC 61.111 47.619 59.018 57.66 48 264 18 21
128 TGAGAAGGTGTTGGAAGCTACA ACACAGGCTGTCAATCTGG 45.455 52.632 59.296 57.361 159 286 22 19
178 CAGCTCGAGTCATACACATCA CAATCTGGGTGGCTGCCA 47.619 61.111 57.573 59.964 98 275 21 18
238 CGGGCAGCTCGAGTCATA TCACTGACAGGCTTTTGAAACA 61.111 40.909 58.88 58.648 94 331 18 22