Rolling Nagoya Mouse Strain (PROD-rol/rol) with Classic Piebald Mutation
JOURNAL OF VETERINARY MEDICAL SCIENCE
Authors: Yoshimoto, Takuro; Aoyama, Yo; Kim, Tae Yeon; Niimi, Kimie; Takahashi, Eiki; Itakura, Chitoshi
Abstract
Ataxic rolling Nagoya (PROD-rol/rol) mice, which carry a mutation in the alpha l subunit of the Ca(v)2.1 channel (Cacna1a) gene, were discovered in 1969. They show white spots on agouti coat and have a mutation in the piebald spotting (s) locus. However, mutation analysis of the s locus encoding the endothelin receptor type B (Ednrb) gene in PROD-rol/rol mice had not been performed. Here, we examined the genomic and mRNA sequences of the Ednrb gene in PROD-rol/rol and wild-type rolling Nagoya (PROD-s/s) and studied the expression patterns of Ednrb and Cacna1a genes in these mice in comparison with C57BL/6J mice. Polymerase chain reaction analyses revealed two silent nucleotide substitutions in the coding region and insertion of a retroposon-like element in intron 1 of the Ednrb gene. Expression analyses demonstrated similar localizations and levels of Ednrb and Cacna1a expression in the colon between PROD-rol/rol and PROD-s/s mice, but the expression levels of both genes were diminished compared with C57BL/6J mice. Microsatellite genotyping showed that at least particular regions of chromosome 14 proximal to the Ednrb locus of the PROD strain were derived from Japanese fancy piebald mice. These results indicated that PROD-rollrol mice have two mutant genes, Ednrb and Cacna1a. As no PROD strain had an intact Ednrb gene, using congenic rolling mice would better serve to examine rolling Nagoya-type Cav2.1 channel dysfunctions.
Genome-wide association study and meta-analysis of intraocular pressure
HUMAN GENETICS
Authors: Ozel, A. Bilge; Moroi, Sayoko E.; Reed, David M.; Nika, Melisa; Schmidt, Caroline M.; Akbari, Sara; Scott, Kathleen; Rozsa, Frank; Pawar, Hemant; Musch, David C.; Lichter, Paul R.; Gaasterland, Doug; Branham, Kari; Gilbert, Jesse; Garnai, Sarah J.; Chen, Wei; Othman, Mohammad; Heckenlively, John; Swaroop, Anand; Abecasis, Goncalo; Friedman, David S.; Zack, Don; Ashley-Koch, Allison; Ulmer, Megan; Kang, Jae H.; Liu, Yutao; Yaspan, Brian L.; Haines, Jonathan; Allingham, R. Rand; Hauser, Michael A.; Pasquale, Louis; Wiggs, Janey; Richards, Julia E.; Li, Jun Z.
Abstract
Elevated intraocular pressure (IOP) is a major risk factor for glaucoma and is influenced by genetic and environmental factors. Recent genome-wide association studies (GWAS) reported associations with IOP at TMCO1 and GAS7, and with primary open-angle glaucoma (POAG) at CDKN2B-AS1, CAV1/CAV2, and SIX1/SIX6. To identify novel genetic variants and replicate the published findings, we performed GWAS and meta-analysis of IOP in > 6,000 subjects of European ancestry collected in three datasets: the NEI Glaucoma Human genetics collaBORation, GLAUcoma Genes and ENvironment study, and a subset of the Age-related Macular Degeneration-Michigan, Mayo, AREDS and Pennsylvania study. While no signal achieved genome-wide significance in individual datasets, a meta-analysis identified significant associations with IOP at TMCO1 (rs7518099-G, p = 8.0 x 10(-8)). Focused analyses of five loci previously reported for IOP and/or POAG, i.e., TMCO1, CDKN2B-AS1, GAS7, CAV1/CAV2, and SIX1/SIX6, revealed associations with IOP that were largely consistent across our three datasets, and replicated the previously reported associations in both effect size and direction. These results confirm the involvement of common variants in multiple genomic regions in regulating IOP and/or glaucoma risk.