Aliases hsa_circRNA_000167 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr14:20811404-20811554:n/a
CircRNA type Senseoverlapping Gene ID ENSG00000259001.2
Gene Name RPPH1 Detection pipeline n/a
Sample Type Cystic fibrosis(CF)
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_0000518 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr14:20811404-20811554:-
CircRNA type . Gene ID ENSG00000259001.2
Gene Name RPPH1 Detection pipeline .
Sample Type cd_19; cd_34; neutr; Hs68_RNase; Hs68_control
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_circRNA_000167 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr14:20811404-20811554:-
CircRNA type intragenic Gene ID ENSG00000259001.2
Gene Name RPPH1 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_0000517 Scientific name Homo sapiens (hg19)
Organism Human Genome Locus chr14:20811404-20811554:-
CircRNA type N/A Gene ID ENSG00000259001.2
Gene Name RPPH1 Detection pipeline N/A
Sample Type Multiple sclerosis
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 AGTTCCCAGAGAACGGGG
Reverse Primer CCCGAAGCTCAGGGAGAG
Suggested primers
Product size Left primer Right primer Left GC Right GC Left TM Right TM Left pos Right pos Left size Right size
112 CCCACTGATGAGCTTCCCT GTCAGACTGGGCAGGAGATG 57.895 60 58.695 59.822 138 249 19 20
119 GGCCCCACTGATGAGCTT CGAGGTCAGACTGGGCAG 61.111 66.667 59.32 59.424 135 253 18 18
101 CTTCCCTCCGCCCTATGG GGTCAGACTGGGCAGGAG 66.667 66.667 58.848 59.015 150 250 18 18
101 CTTCCCTCCGCCCTATGG GGTCAGACTGGGCAGGAG 66.667 66.667 58.848 59.015 150 250 18 18
112 CCCACTGATGAGCTTCCCT GTCAGACTGGGCAGGAGATG 57.895 60 58.695 59.822 138 249 19 20
119 GGCCCCACTGATGAGCTT CGAGGTCAGACTGGGCAG 61.111 66.667 59.32 59.424 135 253 18 18
101 CTTCCCTCCGCCCTATGG GGTCAGACTGGGCAGGAG 66.667 66.667 58.848 59.015 150 250 18 18
112 CCCACTGATGAGCTTCCCT GTCAGACTGGGCAGGAGATG 57.895 60 58.695 59.822 138 249 19 20
119 GGCCCCACTGATGAGCTT CGAGGTCAGACTGGGCAG 61.111 66.667 59.32 59.424 135 253 18 18
112 CCCACTGATGAGCTTCCCT GTCAGACTGGGCAGGAGATG 57.895 60 58.695 59.822 138 249 19 20
101 CTTCCCTCCGCCCTATGG GGTCAGACTGGGCAGGAG 66.667 66.667 58.848 59.015 150 250 18 18
119 GGCCCCACTGATGAGCTT CGAGGTCAGACTGGGCAG 61.111 66.667 59.32 59.424 135 253 18 18
112 CCCACTGATGAGCTTCCCT GTCAGACTGGGCAGGAGATG 57.895 60 58.695 59.822 138 249 19 20
101 CTTCCCTCCGCCCTATGG GGTCAGACTGGGCAGGAG 66.667 66.667 58.848 59.015 150 250 18 18
119 GGCCCCACTGATGAGCTT CGAGGTCAGACTGGGCAG 61.111 66.667 59.32 59.424 135 253 18 18