Neuner-Jehle M, Munier F, Kobetz A, Sahly I, Uteza Y, Mermoud A, Schorderet D F, Dufier J L, Abitbol M
Centre de Recherche Thérapeutique en Ophtalmolgie, Université René Descartes Paris V, Faculté de la Médecine Necker, 156 rue de Vaugirard, F-75015 Paris, France.
Hum Mutat. 1998;12(2):138. doi: 10.1002/(SICI)1098-1004(1998)12:2<138::AID-HUMU17>3.0.CO;2-D.
We report two novel PAX6 mutations in aniridia patients of two Swiss pedigrees (We, Sc) which give rise to different phenotypes. An SSCP analysis of the PAX6 14 exons reveals electrophoretic mobility shifts exclusively in exons 5 and 12 of aniridia patients. As determined by bidirectional sequencing and restriction digest analysis, these shifts are caused by mono-allelic base transitions in exon 5 (c.547C-->T; R44X; We) and intron 12 (IVS12+5G-->A; Sc). Each mutation co-segregates with the trait in the affected family with complete penetrance. The Sc mutation in the splicing donor site of intron 12 may result in either intron inclusion or exon skipping, both giving rise to a truncated PAX6 protein which may retain a residual transactivating activity. In contrast, the We genetic alteration is a loss-of-function mutation leading to a more severe phenotype than that observed in the Sc pedigree.
我们报告了来自两个瑞士家系(We、Sc)的无虹膜患者中的两种新型PAX6突变,这两种突变导致了不同的表型。对PAX6的14个外显子进行的SSCP分析显示,无虹膜患者仅在外显子5和12中出现电泳迁移率改变。通过双向测序和限制性消化分析确定,这些改变是由外显子5(c.547C→T;R44X;We)和内含子12(IVS12+5G→A;Sc)中的单等位基因突变引起的。每个突变在受影响的家族中与该性状完全共分离。内含子12剪接供体位点的Sc突变可能导致内含子保留或外显子跳跃,二者都会产生截短的PAX6蛋白,该蛋白可能保留残余的反式激活活性。相比之下,We家系的基因改变是一种功能丧失突变,导致的表型比Sc家系中观察到的更为严重。