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Claudin-19 相关疾病突变破坏视网膜神经发生和视觉功能。

Disease-associated mutations of claudin-19 disrupt retinal neurogenesis and visual function.

机构信息

1Department of Surgery, Yale University, PO Box 208062, New Haven, CT USA.

2Department of Ophthalmology, Yale University, 40 Temple Street, New Haven, CT USA.

出版信息

Commun Biol. 2019 Mar 25;2:113. doi: 10.1038/s42003-019-0355-0. eCollection 2019.

Abstract

Mutations of claudin-19 cause Familial Hypomagnesaemia and Hypercalciuria, Nephrocalcinosis with Ocular Involvement. To study the ocular disease without the complications of the kidney disease, naturally occurring point mutations of human CLDN19 were recreated in human induced pluripotent cells or overexpressed in the retinae of newborn mice. In human induced pluripotent cells, we show that the mutation affects retinal neurogenesis and maturation of retinal pigment epithelium (RPE). In mice, the mutations diminish the P1 wave of the electroretinogram, activate apoptosis in the outer nuclear layer, and alter the morphology of bipolar cells. If mice are given -retinal to counter the loss of retinal isomerase, the P1 wave is partially restored. The ARPE19 cell line fails to express claudin-19. Exogenous expression of wild type, but not mutant claudin-19, increases the expression of RPE signature genes. Mutated claudin-19 affects multiple stages of RPE and retinal differentiation through its effects on multiple functions of the RPE.

摘要

CLDN19 基因突变导致家族性低镁血症和高钙尿症、肾钙质沉着症伴眼部受累。为了研究不伴有肾脏疾病并发症的眼部疾病,我们在人诱导多能细胞中重现了人类 CLDN19 的天然点突变,或在新生小鼠的视网膜中过表达。在人诱导多能细胞中,我们表明该突变影响视网膜神经发生和视网膜色素上皮(RPE)的成熟。在小鼠中,这些突变会降低视网膜电图的 P1 波,激活外核层的细胞凋亡,并改变双极细胞的形态。如果给小鼠补充 -retinal 以抵消视网膜异构酶的缺失,P1 波会部分恢复。ARPE19 细胞系无法表达 Claudin-19。野生型 Claudin-19 的外源性表达会增加 RPE 特征基因的表达,但突变型 Claudin-19 则不会。突变的 Claudin-19 通过对 RPE 的多种功能的影响,影响 RPE 和视网膜分化的多个阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed2f/6433901/21fe34ed7045/42003_2019_355_Fig1_HTML.jpg

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