https://nova.newcastle.edu.au/vital/access/ /manager/Index ${session.getAttribute("locale")} 5 Tenascin C in Lung Diseases https://nova.newcastle.edu.au/vital/access/ /manager/Repository/uon:51134 Wed 28 Feb 2024 16:20:04 AEDT ]]> Association of forced vital capacity with the developmental gene NCOR2 https://nova.newcastle.edu.au/vital/access/ /manager/Repository/uon:29806 p<0.002; 0.05/25), with a nominal p-value considered as suggestive evidence. For SNPs with evidence of replication, effects on the expression levels of nearby genes in lung tissue were tested in 1,111 lung samples (Lung eQTL consortium), with further functional investigation performed using public epigenomic profiling data (ENCODE). Results: NCOR2-rs12708369 showed strong replication in children (p = 0.0002), with replication unavailable in adults due to low imputation quality. This intronic variant is in a strong transcriptional enhancer element in lung fibroblasts, but its eQTL effects could not be tested due to low imputation quality in the eQTL dataset. SERPINE2-rs6754561 replicated at nominal level in both adults (p = 0.036) and children (p = 0.045), while WNT16-rs2707469 replicated at nominal level only in adults (p = 0.026). The eQTL analyses showed association of WNT16-rs2707469 with expression levels of the nearby gene CPED1.We found no statistically significant eQTL effects for SERPINE2-rs6754561. Conclusions: We have identified a new gene, NCOR2, in the retinoic acid signalling pathway pointing to a role of vitamin A metabolism in the regulation of FVC. Our findings also support SERPINE2, a COPD gene with weak previous evidence of association with FVC, and suggest WNT16 as a further promising candidate.]]> Sat 24 Mar 2018 07:30:34 AEDT ]]> Lung development and emerging roles for type 2 immunity https://nova.newcastle.edu.au/vital/access/ /manager/Repository/uon:47749 Fri 27 Jan 2023 09:57:00 AEDT ]]>