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遗传性视网膜变性伴光感受器细胞丧失的小鼠模型。

Mouse Models of Inherited Retinal Degeneration with Photoreceptor Cell Loss.

机构信息

The Jackson Laboratory, Bar Harbor, Maine, ME 04609, USA.

Department of Immunology, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok 10700, Thailand.

出版信息

Cells. 2020 Apr 10;9(4):931. doi: 10.3390/cells9040931.

Abstract

Inherited retinal degeneration (RD) leads to the impairment or loss of vision in millions of individuals worldwide, most frequently due to the loss of photoreceptor (PR) cells. Animal models, particularly the laboratory mouse, have been used to understand the pathogenic mechanisms that underlie PR cell loss and to explore therapies that may prevent, delay, or reverse RD. Here, we reviewed entries in the Mouse Genome Informatics and PubMed databases to compile a comprehensive list of monogenic mouse models in which PR cell loss is demonstrated. The progression of PR cell loss with postnatal age was documented in mutant alleles of genes grouped by biological function. As anticipated, a wide range in the onset and rate of cell loss was observed among the reported models. The analysis underscored relationships between RD genes and ciliary function, transcription-coupled DNA damage repair, and cellular chloride homeostasis. Comparing the mouse gene list to human RD genes identified in the RetNet database revealed that mouse models are available for 40% of the known human diseases, suggesting opportunities for future research. This work may provide insight into the molecular players and pathways through which PR degenerative disease occurs and may be useful for planning translational studies.

摘要

遗传性视网膜变性 (RD) 导致全球数以百万计的人视力受损或丧失,大多数情况下是由于感光细胞 (PR) 细胞的丧失。动物模型,特别是实验室小鼠,被用于了解导致 PR 细胞丧失的发病机制,并探索可能预防、延迟或逆转 RD 的治疗方法。在这里,我们查阅了 Mouse Genome Informatics 和 PubMed 数据库中的条目,编制了一个综合性的单基因突变小鼠模型清单,其中证明了 PR 细胞的丧失。根据生物学功能对基因的突变等位基因进行分组,记录了 PR 细胞丧失与出生后年龄的关系。正如预期的那样,在所报告的模型中观察到细胞丧失的起始和速度有很大差异。该分析强调了 RD 基因与纤毛功能、转录偶联 DNA 损伤修复和细胞氯离子稳态之间的关系。将小鼠基因列表与 RetNet 数据库中鉴定的人类 RD 基因进行比较,发现 40%的已知人类疾病都有相应的小鼠模型,这表明未来有更多的研究机会。这项工作可能为 PR 退行性疾病发生的分子参与者和途径提供深入了解,并可能有助于规划转化研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3a4/7227028/11bc3e386126/cells-09-00931-g001.jpg

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