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光感受器盘膜包裹在缺乏正常外周蛋白-2/视网膜变性慢(rds)寡聚化的情况下仍会发生。

Photoreceptor Disc Enclosure Occurs in the Absence of Normal Peripherin-2/rds Oligomerization.

作者信息

Lewis Tylor R, Makia Mustafa S, Kakakhel Mashal, Al-Ubaidi Muayyad R, Arshavsky Vadim Y, Naash Muna I

机构信息

Department of Ophthalmology, Duke University Medical Center, Durham, NC, United States.

Department of Biomedical Engineering, University of Houston, Houston, TX, United States.

出版信息

Front Cell Neurosci. 2020 Apr 28;14:92. doi: 10.3389/fncel.2020.00092. eCollection 2020.

Abstract

Mutations in the peripherin-2 gene (, also known as ) cause a heterogeneous range of autosomal dominant retinal diseases. encodes a photoreceptor-specific tetraspanin protein, PRPH2, that is a main structural component of the photoreceptor outer segment. PRPH2 distributes to the rims of outer segment disc membranes as they undergo the process of disc membrane enclosure. Within these rims, PRPH2 exists in homo-oligomeric form or as a hetero-oligomer with another tetraspanin protein, ROM1. While complete loss of PRPH2 prevents photoreceptor outer segment formation, mutations affecting the state of its oligomerization, including C150S, C213Y and Y141C, produce outer segment structural defects. In this study, we addressed whether any of these mutations also affect disc enclosure. We employed recently developed methodology for ultrastructural analysis of the retina, involving tissue processing with tannic acid, to assess the status of disc enclosure in knockin mouse models bearing either one or two alleles of the C150S, C213Y and Y141C PRPH2 mutations. While varying degrees of outer segment structural abnormalities were observed in each of these mouse models, they contained both newly forming "open" discs and mature "enclosed" discs. These data demonstrate that normal PRPH2 oligomerization is not essential for photoreceptor disc enclosure.

摘要

外周蛋白-2基因(也称为 )的突变会导致一系列异质性的常染色体显性视网膜疾病。 编码一种光感受器特异性四跨膜蛋白PRPH2,它是光感受器外段的主要结构成分。当外段盘膜进行盘膜包被过程时,PRPH2分布于外段盘膜的边缘。在这些边缘区域,PRPH2以同型寡聚体形式存在,或与另一种四跨膜蛋白ROM1形成异型寡聚体。虽然PRPH2的完全缺失会阻止光感受器外段的形成,但影响其寡聚化状态的突变,包括C150S、C213Y和Y141C,会导致外段结构缺陷。在本研究中,我们探讨了这些突变是否也会影响盘膜包被。我们采用了最近开发的用于视网膜超微结构分析的方法,包括用单宁酸处理组织,以评估携带C150S、C213Y和Y141C PRPH2突变的一个或两个等位基因的敲入小鼠模型中的盘膜包被状态。虽然在每个这些小鼠模型中都观察到了不同程度的外段结构异常,但它们都包含新形成的“开放”盘和成熟的“包被”盘。这些数据表明,正常的PRPH2寡聚化对于光感受器盘膜包被并非必不可少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d70/7198881/9b0269223d0d/fncel-14-00092-g0001.jpg

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