| Literature DB >> 27406592 |
Carl Spickett1,2, Pirro Hysi3, Chistopher J Hammond3, Alan Prescott4, Gregory S Fincham1, Arabella V Poulson1, Annie M McNinch1,2,5, Allan J Richards6,7,8, Martin P Snead1.
Abstract
COL2A1 mutations causing haploinsufficiency of type II collagen cause type 1 Stickler syndrome that has a high risk of retinal detachment and failure of the vitreous to develop normally. Exon 2 of COL2A1 is alternatively spliced, expressed in the eye but not in mature cartilage and encodes a region that binds growth factors TGFβ1 and BMP-2. We investigated how both an apparently de novo variant and a polymorphism in intron 2 altered the efficiency of COL2A1 exon 2 splicing and how the latter may act as a predisposing risk factor for the occurrence of posterior vitreous detachment (PVD)-associated rhegmatogenous retinal detachment (RRD) in the general population. Using amplification of illegitimate transcripts and allele-specific minigenes expressed in cultured cells, we demonstrate variability in exon 2 inclusion not only between different control individuals, but also between different COL2A1 alleles. We identify transacting factors that bind to allele-specific RNA sequences, and investigate the effect of knockdown and overexpression of these factors on exon 2 splicing efficiency. Finally, using a specific cohort of patients with PVD-associated RRD and a control population, we demonstrate a significant difference in the frequency of the COL2A1 intronic variant rs1635532 between the two groups.Entities:
Keywords: COL2A1; alternative splicing; giant retinal tear; posterior vitreous detachment; retinal detachment
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Year: 2016 PMID: 27406592 DOI: 10.1002/humu.23050
Source DB: PubMed Journal: Hum Mutat ISSN: 1059-7794 Impact factor: 4.878