| ID | Type | Location (GRCh37) | Location (GRCh38) | Length | GC content |
|---|---|---|---|---|---|
| hsa_ZNF292_0007300 | Exon-Exon | chr6:87926017-87928449 | chr6:87216299-87218731 | 215 nt | 0.4326 |
| hsa_ZNF292_0007400 | Exon-Exon | chr6:87926017-87953329 | chr6:87216299-87243611 | 555 nt | 0.3982 |
| hsa_ZNF292_0007700 | Exon-Exon | chr6:87928314-87928449 | chr6:87218596-87218731 | 136 nt | 0.4412 |
| hsa_ZNF292_0007800 | Exon-Exon | chr6:87928314-87973406 | chr6:87218596-87263688 | 250 nt | 0.3160 |
| hsa_ZNF292_0008400 | Intron-Intron | chr6:87938401-87938592 | chr6:87228683-87228874 | 192 nt | 0.3906 |
| hsa_ZNF292_0008800 | Exon-Exon | chr6:87943043-87971508 | chr6:87233325-87261790 | 250 nt | 0.2800 |
| hsa_ZNF292_0000100 | Exon-Exon | chr6:87865339-87925680 | chr6:87155621-87215962 | 199 nt | 0.6030 |
| hsa_ZNF292_0000200 | Intron-Intron | chr6:87866520-87869933 | chr6:87156802-87160215 | 250 nt | 0.2960 |
| hsa_chr6_0686500 | Intergenic-Intergenic | chr6:87866713-87866988 | chr6:87156995-87157270 | 276 nt | 0.3478 |
| hsa_ZNF292_0000500 | Intron-Intron | chr6:87866780-87923787 | chr6:87157062-87214069 | 164 nt | 0.4695 |
A study in mice demonstrated that the circZNF292 is hypoxia-induced and regulates Wnt/β-catenin pathway components to promote glioma proliferation and tube formation [Mehta et al. DOI:10.1016/j.pneurobio.2020.101746]. In rat models of myocardial ischemia, the circZNF292 was highly expressed following oxygen glucose deprivation treatment, and its overexpression was shown to release OGD-induced damage [Tian et al. DOI:10.3390/molecules26041155]. A study in human hepatoma cells demonstrated that the circZNF292 promotes hypoxic cell proliferation, vasculogenic mimicry, and radioresistance via the Wnt/β-catenin pathway, and induces tube formation and spheroid sprouting in endothelial cells [Huang et al. DOI: 10.3390/cells11091381]. Research in human glioma cells further showed that the circZNF292 is hypoxia-induced and regulates Wnt/β-catenin pathway components to promote proliferation and tube formation [Mehta et al. DOI: 10.1016/j.pneurobio.2020.101746].