Microphthalmia and Disrupted Retinal Development Due to a LacZ Knock-in/Knock-Out Allele at the Vsx2 Locus.

IF 3.1 Q1 OPHTHALMOLOGY
Eye and Brain Pub Date : 2024-11-23 eCollection Date: 2024-01-01 DOI:10.2147/EB.S480996
Francesca R Napoli, Xiaodong Li, Alan A Hurtado, Edward M Levine
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引用次数: 0

Abstract

Purpose: Visual System Homeobox 2 (Vsx2) is a transcription factor expressed in the developing retina that regulates tissue identity, growth, and fate determination. Several mutations in the Vsx2 gene exist in mice, including a spontaneous nonsense mutation and two targeted missense mutations originally identified in humans. Here, we expand the genetic repertoire to include a LacZ reporter allele (Vsx2LacZ ) designed to express beta-Galactosidase (bGal) and simultaneously disrupt Vsx2 function (knock-in/knock-out).

Methods: We generated a Vsx2LacZ reporter allele with an in-frame fusion to the Vsx2 coding sequence immediately following exon 2. Germline transmission was assessed with genomic DNA PCR and Western blot analysis was used to describe VSX2 expression from the mutant allele (LacZ). Eye size quantification and immunohistology were used to describe the embryonic and postnatal retinal phenotypes of LacZ homozygous and heterozygous mice. The contribution of Mitf to LacZ mutant microphthalmia was probed with the semi-dominant negative Mitfmi allele.

Results: The retinal expression pattern of bGal is concordant with VSX2, and the mutant allele is recessive. Vsx2LacZ homozygous mice have congenital bilateral microphthalmia accompanied by defects in retinal development including ectopic expression of non-retinal genes, reduced proliferation, delayed neurogenesis, aberrant tissue morphology, and an absence of bipolar interneurons - all hallmarks of Vsx2 loss-of-function. The Mitfmi allele reduced the severity of microphthalmia caused by the Vsx2LacZ allele. Unexpectedly, the mutant VSX2 protein is stably expressed, and there are subtle differences in eye size and early retinal neurogenesis when compared to the null mutant, ocular retardation J.

Conclusion: The perdurance of the mutant VSX2 protein combined with subtle deviations from the null phenotype leaves open the possibility that Vsx2LacZ allele is not a complete knock-out. The Vsx2LacZ allele exhibits loss-of-function characteristics and adds to the genetic toolkit for understanding Vsx2 function.

Vsx2位点LacZ敲入/敲除等位基因导致的小眼症和视网膜发育中断。
目的:Visual System Homeobox 2 (Vsx2)是一种在发育中的视网膜中表达的转录因子,调节组织身份、生长和命运决定。小鼠Vsx2基因中存在几种突变,包括一种自发无义突变和两种最初在人类中发现的靶向错义突变。在这里,我们扩展了遗传库,包括一个LacZ报告等位基因(Vsx2LacZ),该等位基因旨在表达β -半乳糖苷酶(bGal),同时破坏Vsx2功能(敲入/敲出)。方法:我们生成了一个Vsx2报告等位基因,该等位基因与Vsx2编码序列在帧内融合,紧邻外显子2。采用基因组DNA PCR评估VSX2的种系传播,采用Western blot分析描述突变等位基因(LacZ)的VSX2表达。用眼大小定量和免疫组织学方法描述了LacZ纯合子和杂合子小鼠的胚胎和出生后视网膜表型。利用半显性Mitfmi阴性等位基因探讨了Mitf对LacZ突变型小眼症的作用。结果:bGal在视网膜的表达模式与VSX2一致,突变等位基因为隐性。Vsx2纯合子小鼠患有先天性双侧小眼症,并伴有视网膜发育缺陷,包括非视网膜基因异位表达、增殖减少、神经发生延迟、组织形态异常和双极中间神经元缺失——这些都是Vsx2功能丧失的标志。Mitfmi等位基因降低了由Vsx2LacZ等位基因引起的小眼症的严重程度。出乎意料的是,突变体VSX2蛋白稳定表达,并且与零突变体(眼发育迟缓)相比,在眼睛大小和早期视网膜神经发生方面存在细微差异。结论:突变体VSX2蛋白的持久性与与零表型的细微偏差使得Vsx2LacZ等位基因没有被完全敲除的可能性。Vsx2LacZ等位基因表现出功能缺失特征,为理解Vsx2功能增加了遗传工具。
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来源期刊
Eye and Brain
Eye and Brain OPHTHALMOLOGY-
CiteScore
7.90
自引率
2.30%
发文量
12
审稿时长
16 weeks
期刊介绍: Eye and Brain is an international, peer-reviewed, open access journal focusing on basic research, clinical findings, and expert reviews in the field of visual science and neuro-ophthalmology. The journal’s unique focus is the link between two well-known visual centres, the eye and the brain, with an emphasis on the importance of such connections. All aspects of clinical and especially basic research on the visual system are addressed within the journal as well as significant future directions in vision research and therapeutic measures. This unique journal focuses on neurological aspects of vision – both physiological and pathological. The scope of the journal spans from the cornea to the associational visual cortex and all the visual centers in between. Topics range from basic biological mechanisms to therapeutic treatment, from simple organisms to humans, and utilizing techniques from molecular biology to behavior. The journal especially welcomes primary research articles or review papers that make the connection between the eye and the brain. Specific areas covered in the journal include: Physiology and pathophysiology of visual centers, Eye movement disorders and strabismus, Cellular, biochemical, and molecular features of the visual system, Structural and functional organization of the eye and of the visual cortex, Metabolic demands of the visual system, Diseases and disorders with neuro-ophthalmic manifestations, Clinical and experimental neuro-ophthalmology and visual system pathologies, Epidemiological studies.
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