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首页> 外文期刊>Human Molecular Genetics >CRB2 in immature photoreceptors determines the superior-inferior symmetry of the developing retina to maintain retinal structure and function
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CRB2 in immature photoreceptors determines the superior-inferior symmetry of the developing retina to maintain retinal structure and function

机译:未成熟光感受器中的CRB2决定了显影视网膜的优异较差的对称性,以保持视网膜结构和功能

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摘要

The mammalian apical-basal determinant Crumbs homolog-1 (CRB1) plays a crucial role in retinal structure and function by the maintenance of adherens junctions between photoreceptors and Muller glial cells. Patients with mutations in the CRB1 gene develop retinal dystrophies, including early-onset retinitis pigmentosa and Leber congenital amaurosis. Previously, we showed that Crb1 knockout mice developed a slow-progressing retinal phenotype at foci in the inferior retina, although specific ablation of Crb2 in immature photoreceptors leads to an early-onset phenotype throughout the retina. Here, we conditionally disrupted one or both alleles of Crb2 in immature photoreceptors, on a genetic background lacking Crb1, and studied the retinal dystrophies thereof. Our data showed that disruption of one allele of Crb2 in immature photoreceptors caused a substantial aggravation of the Crb1 phenotype in the entire inferior retina. The photoreceptor layer showed early-onset progressive thinning limited to the inferior retina, although the superior retina maintained intact. Surprisingly, disruption of both alleles of Crb2 in immature photoreceptors further aggravated the phenotype. Throughout the retina, photoreceptor synapses were disrupted and photoreceptor nuclei intermingled with nuclei of the inner nuclear layer. In the superior retina, the ganglion cell layer appeared thicker because of ectopic nuclei of photoreceptors. In conclusion, the data suggest that CRB2 is required to maintain retinal progenitor and photoreceptor cell adhesion and prevent photoreceptor ingression into the immature inner retina. We hypothesize, from these animal models, that decreased levels of CRB2 in immature photoreceptors adjust retinitis pigmentosa because of the loss of CRB1 into Leber congenital amaurosis phenotype.
机译:哺乳动物顶端基础 - 基础抑制鼠标同源物质-1(CRB1)在视网膜结构中起着至关重要的作用,并且通过维持感光体和Muller胶质细胞之间的粘附结的功能起作用。 CRB1基因突变的患者发育视网膜营药,包括早发视黄症炎,杀菌剂和莱伯先天性阿颈病。以前,我们表明,CRB1敲除小鼠在劣质视网膜中开发了焦点的缓慢性视网膜表型,尽管CRB2在未成熟的感光剂中的特异性消融导致在整个视网膜中的早起表型。这里,在缺乏CRB1的遗传背景上,我们在未成熟的光感受器中有条件地破坏了CRB2的一种或两位等位基因,并研究了其视网膜滴答性。我们的数据表明,在未成熟的光感染者中,CRB2的一个等位基因的破坏导致CRB1表型在整个劣质视网膜中的大量加重。感光层显示出早发逐渐减薄限于下视网膜,尽管上视网膜保持完整。令人惊讶的是,在未成熟光感受器中,CRB2的两位等位基因的破坏进一步加剧了表型。在整个视网膜中,感光体突触被破坏,感光核混合用内核层的核混合。在高级视网膜中,由于感光体的异位核,神经节细胞层出现较厚。总之,数据表明,CRB2需要维持视网膜祖细胞和光感受器细胞粘附,并防止光感受器进入到未成熟的内视网膜中。从这些动物模型中,我们假设来自这些动物模型,在未成熟光感受器中降低CRB2水平,调整视网膜炎,因为CRB1丧失了Leber先天性阿颈病表型。

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  • 来源
    《Human Molecular Genetics》 |2018年第18期|共17页
  • 作者单位

    Leiden Univ Med Ctr Dept Ophthalmol NL-2300 RC Leiden Netherlands;

    Leiden Univ Med Ctr Dept Ophthalmol NL-2300 RC Leiden Netherlands;

    Royal Netherlands Acad Arts &

    Sci Netherlands Inst Neurosci NL-1105 BA Amsterdam Netherlands;

    Leiden Univ Med Ctr Dept Ophthalmol NL-2300 RC Leiden Netherlands;

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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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