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一种新型晚发性视网膜变性(L-ORD)小鼠模型由于 C1qtnf5/Ctrp5 的缺失而出现 RPE 异常。

A Novel Mouse Model for Late-Onset Retinal Degeneration (L-ORD) Develops RPE Abnormalities Due to the Loss of C1qtnf5/Ctrp5.

机构信息

Shiley Eye Institute, University of California San Diego, La Jolla, CA, USA.

Department of Ophthalmology, Scheie Eye Institute, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Adv Exp Med Biol. 2023;1415:335-340. doi: 10.1007/978-3-031-27681-1_48.

Abstract

Late-onset retinal degeneration (L-ORD) is an autosomal dominant macular dystrophy resulting from mutations in the gene CTRP5/C1QTNF5. A mouse model (Ctrp5) for the most common S163R developed many features of human clinical disease. We generated a novel homozygous Ctrp5 gene knock-out (Ctrp5) mouse model to further study the mechanism of L-ORD. The retinal morphology of these mice was evaluated by retinal imaging, light microscopy, and transmission electron microscopy (TEM) at 6, 11, and 18.5 mo. Expression of Ctrp5 was analyzed using immunostaining and qRT-PCR. The Ctrp5 mice showed lack of both Ctrp5 transcript and protein. Presence of a significantly larger number of autofluorescent spots was observed in Ctrp5 mice compared to the WT (P < 0.0001) at 19 mo. Increased RPE stress with vacuolization and thinning was observed as early as 6 mo in Ctrp5 mice. Further, ultrastructural analyses revealed a progressive accumulation of basal laminar sub-RPE deposits in Ctrp5 mice from 11 mo. The Ctrp5 mice shared retinal and RPE pathology that matches with that previously described for Ctrp5 mice suggesting that pathology in these mice results from the loss of functional CTRP5 and that the presence of CTRP5 is critical for normal RPE and retinal function.

摘要

晚期发病性视网膜退行性变(L-ORD)是一种常染色体显性遗传性黄斑营养不良,由基因 CTRP5/C1QTNF5 的突变引起。最常见的 S163R 突变的小鼠模型(Ctrp5)发展出了许多人类临床疾病的特征。我们构建了一种新型的 Ctrp5 基因纯合敲除(Ctrp5)小鼠模型,以进一步研究 L-ORD 的发病机制。通过视网膜成像、光镜和透射电镜(TEM)在 6、11 和 18.5 月龄时评估这些小鼠的视网膜形态。使用免疫染色和 qRT-PCR 分析 Ctrp5 的表达。Ctrp5 小鼠表现出 Ctrp5 转录本和蛋白的完全缺失。与 WT 相比,Ctrp5 小鼠在 19 月龄时观察到明显更多的自发荧光斑点(P < 0.0001)。早在 6 月龄时,Ctrp5 小鼠就观察到 RPE 出现空泡化和变薄等应激反应。此外,超微结构分析显示,从 11 月龄开始,Ctrp5 小鼠的基底层下 RPE 沉积物逐渐积累。Ctrp5 小鼠的视网膜和 RPE 病理学与之前描述的 Ctrp5 小鼠一致,提示这些小鼠的病理学是由于功能性 CTRP5 的缺失引起的,而 CTRP5 的存在对于正常的 RPE 和视网膜功能至关重要。

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