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首页> 外文期刊>Human Molecular Genetics >Mouse models of X-linked juvenile retinoschisis have an early onset phenotype, the severity of which varies with genotype
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Mouse models of X-linked juvenile retinoschisis have an early onset phenotype, the severity of which varies with genotype

机译:X型少年视网膜的小鼠模型具有早期发作表型,其严重程度随基因型而变化

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摘要

X-linked juvenile retinoschisis (XLRS) is an early-onset inherited condition that affects primarily males and is characterized by cystic lesions of the inner retina, decreased visual acuity and contrast sensitivity and a selective reduction of the electroretinogram (ERG) b-wave. Although XLRS is genetically heterogeneous, all mouse models developed to date involve engineered or spontaneous null mutations. In the present study, we have studied three new Rs1 mutant mouse models: (1) a knockout with inserted lacZ reporter gene; (2) a C59S point mutant substitution and (3) an R141C point mutant substitution. Mice were studied from postnatal day (P15) to 28 weeks by spectral domain optical coherence tomography and ERG. Retinas of P21-22 mice were examined using biochemistry, single cell electrophysiology of retinal ganglion cells (RGCs) and by immunohistochemistry. Each model developed intraretinal schisis and reductions in the ERG that were greater for the b-wave than the a-wave. The phenotype of the C59S mutant appeared less severe than the other mutants by ERG at adult ages. RGC electrophysiology demonstrated elevated activity in the absence of a visual stimulus and reduced signal-to-noise ratios in response to light stimuli. Immunohistochemical analysis documented early abnormalities in all cells of the outer retina. Together, these results provide significant insight into the early events of XLRS pathophysiology, from phenotype differences between disease-causing variants to common mechanistic events that may play critical roles in disease presentation and progression.
机译:X-Lixted少年视黄菌(XLR)是一种早熟的遗传条件,其主要影响雄性,并且以内视网膜的囊性病变为特征,降低了视力和对比度敏感性,以及电气识字图(ERG)B波的选择性降低。虽然XLRS是基因异构的,但所有迄今为止开发的小鼠模型都涉及工程或自发性突变。在本研究中,我们研究了三个新的RS1突变小鼠模型:(1)敲除插入的Lacz报告基因; (2)C59S点突变体替代和(3)R141C点突变体替代。通过光谱域光学相干断层扫描和ERG从出生日期(P15)至28周中研究了小鼠。使用生物化学,视网膜神经节细胞(RGCs)和免疫组化来检查P21-22小鼠的视网膜。每个模型都在开发的Intraretinal Schisis并在比A波的B波更大的ERG中减少。 C59S突变体的表型显着严重于成人年龄ERG的其他突变体。 RGC电生理学在不存在视觉刺激和响应于光刺激的情况下,在没有视觉刺激和降低的信噪比下证明了升高的活性。免疫组织化学分析记录了外视网膜的所有细胞的早期异常。这些结果在一起,对XLRS病理生理学的早期事件提供了重要的洞察力,从疾病导体变体之间的表型差异,对疾病呈现和进展中可能发挥关键作用的共同机制事件。

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  • 来源
    《Human Molecular Genetics 》 |2019年第18期| 共19页
  • 作者单位

    Regeneron Pharmaceut 777 Old Saw Mill River Rd Tarrytown NY 10591 USA;

    Cleveland Clin Cole Eye Inst Cleveland OH 44195 USA;

    Weill Cornell Med Burke Neurol Inst White Plains NY 10605 USA;

    Regeneron Pharmaceut 777 Old Saw Mill River Rd Tarrytown NY 10591 USA;

    Regeneron Pharmaceut 777 Old Saw Mill River Rd Tarrytown NY 10591 USA;

    Regeneron Pharmaceut 777 Old Saw Mill River Rd Tarrytown NY 10591 USA;

    Regeneron Pharmaceut 777 Old Saw Mill River Rd Tarrytown NY 10591 USA;

    Cleveland Clin Cole Eye Inst Cleveland OH 44195 USA;

    Cleveland Clin Cole Eye Inst Cleveland OH 44195 USA;

    Regeneron Pharmaceut 777 Old Saw Mill River Rd Tarrytown NY 10591 USA;

    Regeneron Pharmaceut 777 Old Saw Mill River Rd Tarrytown NY 10591 USA;

    Cleveland Clin Cole Eye Inst Cleveland OH 44195 USA;

    Weill Cornell Med Burke Neurol Inst White Plains NY 10605 USA;

    Regeneron Pharmaceut 777 Old Saw Mill River Rd Tarrytown NY 10591 USA;

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

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