Basic Information

Symbol
circPAN3
RNA Class
circRNA
Alias
Poly(A) Specific Ribonuclease Subunit PAN3 Poly(A)-Nuclease Deadenylation Complex Subunit 3 PAB1P-Dependent Poly(A)-Specific Ribonuclease PAN2-PAN3 Deadenylation Complex Subunit PAN3 PAN Deadenylation Complex Subunit 3 PAN3 Poly(A) Specific Ribonuclease Subunit Homolog (S. Cerevisiae) PABP1-Dependent Poly A-Specific Ribonuclease Subunit PAN3 PAB-Dependent Poly(A)-Specific Ribonuclease Subunit PAN3 PAB-Dependent Poly(A)-Specific Ribonuclease Subunit 3 PAN3 Poly(A) Specific Ribonuclease Subunit Homolog PAN3 Poly(A) Specific Ribonuclease Subunit PABP-Dependent Poly(A) Nuclease 3 PAB1P-Dependent Poly(A)-Nuclease
Location (GRCh37)
13:28712643-28869475 UCSC Genome Browser
Location (GRCh38)
Host gene
PAN3
Host category
mRNA
Forensic tag(s)
Other applications
External database

Transcripts

ID Type Location (GRCh37) Location (GRCh38) Length GC content
hsa_PAN3_0007900 Intron-Intron chr13:28765388-28768925 chr13:28191251-28194788 250 nt 0.3440
hsa_PAN3_0008000 Intron-Exon-Intron chr13:28765388-28771483 chr13:28191251-28197346 57 nt 0.4211
hsa_PAN3_0008100 Intron-Exon-Intron chr13:28765388-28794515 chr13:28191251-28220378 367 nt 0.4768
hsa_PAN3_0008200 Intron-Exon-Intron chr13:28765388-28795952 chr13:28191251-28221815 219 nt 0.4658
hsa_PAN3_0008300 Intron-Exon-Intron chr13:28765388-28801383 chr13:28191251-28227246 219 nt 0.4658
hsa_PAN3_0008400 Intron-Exon-Intron chr13:28765388-28813833 chr13:28191251-28239696 57 nt 0.4211
hsa_PAN3_0008500 Intron-Exon-Intron chr13:28765388-28830676 chr13:28191251-28256539 57 nt 0.4211
hsa_PAN3_0008600 Intron-Exon-Intron chr13:28765388-28835595 chr13:28191251-28261458 174 nt 0.4943
hsa_PAN3_0008700 Intron-Exon-Intron chr13:28765388-28845003 chr13:28191251-28270866 223 nt 0.4395
hsa_PAN3_0008800 Intron-Exon chr13:28765388-28846208 chr13:28191251-28272071 148 nt 0.3716
Showing 131 to 140 of 282 entries
Forensic Context

A study in humans and mice demonstrated that the circPAN3 regulates the regeneration of LGR5+ intestinal stem cells and activates the WNT signaling pathway [Misir et al. DOI:10.1038/s41418-022-00948-7].