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Loss of CRB2 in the mouse retina mimics human retinitis pigmentosa due to mutations in the CRB1 gene

机译:由于CRB1基因突变,小鼠视网膜中CRB2的丢失模拟了人类视网膜色素变性

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摘要

In humans, the Crumbs homolog-1 (CRB1) gene is mutated in progressive types of autosomal recessive retinitis pigmentosa and Leber congenital amaurosis. However, there is no clear genotype-phenotype correlation for CRB1 mutations, which suggests that other components of the CRB complex may influence the severity of retinal disease. Therefore, to understand the physiological role of the Crumbs complex proteins, we generated and analysed conditional knockout mice lacking CRB2 in the developing retina. Progressive disorganization was detected during late retinal development. Progressive thinning of the photoreceptor layer and sites of cellular mislocalization was detected throughout the CRB2-deficient retina by confocal scanning laser ophthalmoscopy and spectral domain optical coherence tomography. Under scotopic conditions using electroretinography, the attenuation of the a-wave was relatively stronger than that of the b-wave, suggesting progressive degeneration of photoreceptors in adult animals. Histological analysis of newborn mice showed abnormal lamination of immature rod photoreceptors and disruption of adherens junctions between photoreceptors, M??ller glia and progenitor cells. The number of late-born progenitor cells, rod photoreceptors and M??ller glia cells was increased, concomitant with programmed cell death of rod photoreceptors. The data suggest an essential role for CRB2 in proper lamination of the photoreceptor layer and suppression of proliferation of late-born retinal progenitor cells. ? The Author 2012. Published by Oxford University Press. All rights reserved.
机译:在人类中,Crombs homolog-1(CRB1)基因在常染色体隐性色素性视网膜炎和Leber先天性黑病的进行性类型中发生突变。但是,CRB1突变没有明确的基因型与表型相关性,这表明CRB复合物的其他成分可能会影响视网膜疾病的严重性。因此,为了了解Crumbs复合蛋白的生理作用,我们生成并分析了发育中的视网膜中缺少CRB2的条件敲除小鼠。在视网膜晚期发育期间检测到进行性混乱。通过共聚焦扫描激光检眼镜和光谱域光学相干断层扫描技术检测到整个CRB2缺陷视网膜中感光层的逐渐变薄和细胞错位的位置。在暗视条件下使用视网膜电描记法,a波的衰减相对强于b波,表明成年动物中感光细胞逐渐退化。新生小鼠的组织学分析显示,未成熟的杆状光感受器的异常层压以及光感受器,M?ller胶质细胞和祖细胞之间的粘附连接被破坏。后期出生的祖细胞,杆状感光细胞和M?ller胶质细胞的数量增加,并伴随杆状感光细胞的程序性死亡。数据表明,CRB2在感光层的正确层压和抑制晚期视网膜祖细胞增殖中起着至关重要的作用。 ?作者2012。牛津大学出版社出版。版权所有。

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