Aliases hsa_circ_0000181 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr1:212977661-212981190:+
CircRNA type . Gene ID ENSG00000143494.15
Gene Name VASH2 Detection pipeline .
Sample Type cd_34; K562
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_29902 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr1:212977661-212981190
CircRNA type . Gene ID NA
Gene Name NA Detection pipeline .
Sample Type Cortex;Diencephalon;K562;Temporal;Hs68;Liver_N21;Liver_N19;Liver_N17
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_circ_0000181 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr1:212977661-212981190:+
CircRNA type N/A Gene ID ENSG00000143494.15
Gene Name VASH2 Detection pipeline N/A
Sample Type Gastric 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 GAACTGAATGGGCTTGCTATGAAA
Reverse Primer CAGCTGCACTGAGAACATCTCTGA
Suggested primers
Product size Left primer Right primer Left GC Right GC Left TM Right TM Left pos Right pos Left size Right size
137 TGCATGCATTTGATGGTCGG TTCACCAGTGCCAGCAAATC 50 50 59.543 59.039 105 241 20 20
110 GCCATGGAAGGAGTAAGAGC TGTTCACCAGTGCCAGCAA 55 52.632 58.04 60.077 134 243 20 19
167 GCCATCTGTAGCCATGGAAG TGGCTAACTGGATCTGTCTGA 55 47.619 58.398 58.18 124 290 20 21
118 TGGAAGGAGTAAGAGCTGGG TGCTCTTCCTTCTGTTCACCA 55 47.619 58.427 59.232 138 255 20 21
109 AGAAGTGGACAGGTTGGACT GTCTTTTGGCTAACTGGATCTGT 50 43.478 58.192 58.672 188 296 20 23
113 AGAGCTGGGTACTTCTTCTCA TGTCTTTGCTCTTCCTTCTGT 47.619 42.857 57.823 57.154 149 261 21 21
139 TCTGTAGCCATGGAAGGAGT GGACTTGTCTTTGCTCTTCCT 50 47.619 57.746 57.867 128 266 20 21
100 GTCGGCCATCTGTAGCCAT GGGGAGAAATCTAGTCCAACCT 57.895 50 59.552 58.884 120 219 19 22
129 TTTGAAAGGTGCTGAGAAGGT AGTCCAACCTGTCCACTTCT 42.857 50 57.703 58.192 79 207 21 20
118 GGAGTAAGAGCTGGGTACTTCT GTCTTTGCTCTTCCTTCTGTTCA 50 43.478 58.633 58.87 143 260 22 23
133 GAAGGAGTAAGAGCTGGGTACT TGATTAGGACTTGTCTTTGCTCT 50 39.13 58.633 57.51 140 272 22 23
121 GGGTACTTCTTCTCAATTCCCC GTCTGATTAGGACTTGTCTTTGC 50 43.478 58.113 57.462 155 275 22 23
137 TGCATGCATTTGATGGTCGG TTCACCAGTGCCAGCAAATC 50 50 59.543 59.039 105 241 20 20
118 TGGAAGGAGTAAGAGCTGGG TGCTCTTCCTTCTGTTCACCA 55 47.619 58.427 59.232 138 255 20 21
167 GCCATCTGTAGCCATGGAAG TGGCTAACTGGATCTGTCTGA 55 47.619 58.398 58.18 124 290 20 21
129 TTTGAAAGGTGCTGAGAAGGT AGTCCAACCTGTCCACTTCT 42.857 50 57.703 58.192 79 207 21 20
110 GCCATGGAAGGAGTAAGAGC TGTTCACCAGTGCCAGCAA 55 52.632 58.04 60.077 134 243 20 19
100 GTCGGCCATCTGTAGCCAT GGGGAGAAATCTAGTCCAACCT 57.895 50 59.552 58.884 120 219 19 22
139 TCTGTAGCCATGGAAGGAGT GGACTTGTCTTTGCTCTTCCT 50 47.619 57.746 57.867 128 266 20 21
109 AGAAGTGGACAGGTTGGACT GTCTTTTGGCTAACTGGATCTGT 50 43.478 58.192 58.672 188 296 20 23
118 GGAGTAAGAGCTGGGTACTTCT GTCTTTGCTCTTCCTTCTGTTCA 50 43.478 58.633 58.87 143 260 22 23
113 AGAGCTGGGTACTTCTTCTCA TGTCTTTGCTCTTCCTTCTGT 47.619 42.857 57.823 57.154 149 261 21 21
121 GGGTACTTCTTCTCAATTCCCC GTCTGATTAGGACTTGTCTTTGC 50 43.478 58.113 57.462 155 275 22 23
133 GAAGGAGTAAGAGCTGGGTACT TGATTAGGACTTGTCTTTGCTCT 50 39.13 58.633 57.51 140 272 22 23