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一种 PDE6H 的无意义突变导致常染色体隐性不完全色盲。

A nonsense mutation in PDE6H causes autosomal-recessive incomplete achromatopsia.

机构信息

Molecular Genetics Laboratory, Institute for Ophthalmic Research, Centre for Ophthalmology, University of Tuebingen, 72076 Tuebingen, Germany.

出版信息

Am J Hum Genet. 2012 Sep 7;91(3):527-32. doi: 10.1016/j.ajhg.2012.07.006. Epub 2012 Aug 16.

Abstract

Achromatopsia (ACHM) is an autosomal-recessive retinal dystrophy characterized by color blindness, photophobia, nystagmus, and severely reduced visual acuity. Its prevalence has been estimated to about 1 in 30,000 individuals. Four genes, GNAT2, PDE6C, CNGA3, and CNGB3, have been implicated in ACHM, and all encode functional components of the phototransduction cascade in cone photoreceptors. Applying a functional-candidate-gene approach that focused on screening additional genes involved in this process in a cohort of 611 index cases with ACHM or other cone photoreceptor disorders, we detected a homozygous single base change (c.35C>G) resulting in a nonsense mutation (p.Ser12(∗)) in PDE6H, encoding the inhibitory γ subunit of the cone photoreceptor cyclic guanosine monophosphate phosphodiesterase. The c.35C>G mutation was present in three individuals from two independent families with a clinical diagnosis of incomplete ACHM and preserved short-wavelength-sensitive cone function. Moreover, we show through immunohistochemical colocalization studies in mouse retina that Pde6h is evenly present in all retinal cone photoreceptors, a fact that had been under debate in the past. These findings add PDE6H to the set of genes involved in autosomal-recessive cone disorders and demonstrate the importance of the inhibitory γ subunit in cone phototransduction.

摘要

全色盲(ACHM)是一种常染色体隐性视网膜营养不良,其特征是色盲、畏光、眼球震颤和严重的视力下降。据估计,其患病率约为每 3 万人中有 1 人。已有 4 个基因,GNAT2、PDE6C、CNGA3 和 CNGB3,与 ACHM 相关,它们均编码视锥光感受器光转导级联反应的功能性成分。通过对 611 例 ACHM 或其他视锥光感受器疾病的索引病例进行功能候选基因方法筛选,我们发现了一个纯合单碱基改变(c.35C>G),导致 PDE6H 中的无义突变(p.Ser12(∗)),PDE6H 编码视锥光感受器环鸟苷酸磷酸二酯酶的抑制性 γ 亚基。c.35C>G 突变存在于两个独立家族的 3 个具有不完全 ACHM 和保存短波敏感视锥功能的临床诊断个体中。此外,我们通过在小鼠视网膜中的免疫组织化学共定位研究表明,Pde6h 均匀存在于所有视网膜视锥光感受器中,这一事实在过去曾存在争议。这些发现将 PDE6H 添加到涉及常染色体隐性锥体细胞疾病的基因集合中,并证明了抑制性 γ 亚基在视锥光转导中的重要性。

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