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首页> 外文期刊>Human Molecular Genetics >Determining consequences of retinal membrane guanylyl cyclase (RetGC1) deficiency in human leber congenital amaurosis en route to therapy: Residual cone-photoreceptor vision correlates with biochemical properties of the mutants
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Determining consequences of retinal membrane guanylyl cyclase (RetGC1) deficiency in human leber congenital amaurosis en route to therapy: Residual cone-photoreceptor vision correlates with biochemical properties of the mutants

机译:视网膜膜冠状阴性环菌(Retgc1)缺乏对治疗途中的视网膜膜冠状阴性环菌(RETGC1)的后果:残留锥形光感受器视觉与突变体的生化特性相关

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摘要

The GUCY2D gene encodes retinal membrane guanylyl cyclase (RetGC1), a key component of the phototransduction machinery in photoreceptors. Mutations in GUCY2D cause Leber congenital amaurosis type 1 (LCA1), an autosomal recessive human retinal blinding disease. The effects of RetGC1 deficiency on human rod and cone photoreceptor structure and function are currently unknown. To move LCA1 closer to clinical trials, we characterized a cohort of patients (ages 6 months-37 years) with GUCY2D mutations. In vivo analyses of retinal architecture indicated intact rod photoreceptors in all patients but abnormalities in foveal cones. By functional phenotype, there were patients with and those without detectable cone vision. Rod vision could be retained and did not correlate with the extent of cone vision or age. In patients without cone vision, rod vision functioned unsaturated under bright ambient illumination. In vitro analyses of the mutant alleles showed that in addition to the major truncation of the essential catalytic domain in RetGC1, some missense mutations in LCA1 patients result in a severe loss of function by inactivating its catalytic activity and/or ability to interact with the activator proteins, GCAPs. The differences in rod sensitivities among patients were not explained by the biochemical properties of the mutants. However, the RetGC1 mutant alleles with remaining biochemical activity in vitro were associated with retained cone vision in vivo. We postulate a relationship between the level of RetGC1 activity and the degree of cone vision abnormality, and argue for cone function being the efficacy outcome in clinical trials of gene augmentation therapy in LCA1. ? The Author 2012. Published by Oxford University Press. All rights reserved.
机译:Gucy2D基因编码视网膜膜观叶环环酶(RETGC1),光感受器中的光电机构机械的关键组分。 Gucy2D的突变导致Leber先天性生物症1(LCA1),常染色体隐性人视网膜致盲疾病。 RETGC1缺乏对人杆和锥形感光体结构和功能的影响目前未知。为了使LCA1更接近临床试验,我们将患者(6个月至37岁)的队列与Gucy2D突变相结合。在视网膜架构的体内分析中,指示所有患者的完整棒光感受器,但心脏锥体异常。通过功能表型,患者和那些没有可检测的锥形视觉的患者。可以保留杆视觉,并且没有与锥形视觉或年龄的程度相关。在没有锥形视觉的患者中,在明亮的环境照明下杆视觉功能不饱和。突变等位基因的体外分析表明,除了RETGC1中的主要催化结构域的主要截短之外,LCA1患者中的一些畸形突变通过灭活其催化活性和/或与活化剂相互作用而导致功能严重丧失功能蛋白质,GCAPA。患者之间的杆敏感性的差异未被突变体的生化特性解释。然而,具有剩余生物化学活性的RETGC1突变等位基因在体内的保留锥视觉相关。我们假设RETGC1活性水平与锥形视觉异常程度之间的关系,并争论LCA1基因增强治疗临床试验中的疗效结果。还作者2012.牛津大学出版社出版。版权所有。

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  • 来源
    《Human Molecular Genetics 》 |2013年第1期| 共16页
  • 作者单位

    Scheie Eye Institute Department of Ophthalmology University of Pennsylvania Perelman School of;

    Scheie Eye Institute Department of Ophthalmology University of Pennsylvania Perelman School of;

    Department of Basic Sciences and Pennsylvania College of Optometry Salus University Elkins Park;

    Scheie Eye Institute Department of Ophthalmology University of Pennsylvania Perelman School of;

    Department of Basic Sciences and Pennsylvania College of Optometry Salus University Elkins Park;

    Departments of Neuroscience and Ophthalmology Johns Hopkins University School of Medicine;

    Scheie Eye Institute Department of Ophthalmology University of Pennsylvania Perelman School of;

    Scheie Eye Institute Department of Ophthalmology University of Pennsylvania Perelman School of;

    Scheie Eye Institute Department of Ophthalmology University of Pennsylvania Perelman School of;

    Scheie Eye Institute Department of Ophthalmology University of Pennsylvania Perelman School of;

    Departments of Neuroscience and Ophthalmology Johns Hopkins University School of Medicine;

    Department of Ophthalmology and Vision Sciences Hospital for Sick Children University of Toronto;

    Department of Ophthalmology and Visual Sciences The Howard Hughes Medical Institute University of;

    Department of Basic Sciences and Pennsylvania College of Optometry Salus University Elkins Park;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学 ;
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