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EFEMP1 促进斑马鱼光依赖性眼球生长。

EFEMP1 contributes to light-dependent ocular growth in zebrafish.

机构信息

School of BioSciences, The University of Melbourne, Parkville, Victoria, 3010, Australia.

Department of Optometry and Vision Sciences, The University of Melbourne, Parkville, Victoria, 3010, Australia.

出版信息

Biol Open. 2024 Dec 15;13(12). doi: 10.1242/bio.061741. Epub 2024 Nov 28.

Abstract

Myopia (short-sightedness) is the most common ocular disorder. It generally develops after over-exposure to aberrant visual environments, disrupting emmetropization mechanisms that should match eye growth with optical power. A pre-screening of strongly associated myopia-risk genes identified through human genome-wide association studies implicates efemp1 in myopia development, but how this gene impacts ocular growth remains unclear. Here, we modify efemp1 expression specifically in the retina of zebrafish. We found that under normal lighting, efemp1 mutants developed axial myopia, enlarged eyes, reduced spatial vision and altered retinal function. However, under myopia-inducing dark-rearing, compared to control fish, mutants remained emmetropic and showed changes in retinal function. Efemp1 modification changed the expression of efemp1, egr1, tgfb1a, vegfab and rbp3 genes in the eye, and changed the inner retinal distributions of myopia-associated EFEMP1, TIMP2 and MMP2 proteins. Efemp1 modification also impacted dark-rearing-induced responses of vegfab and wnt2b genes and above-mentioned myopia-associated proteins. Together, we provided robust evidence that light-dependent ocular growth is regulated by efemp1.

摘要

近视(短视)是最常见的眼部疾病。它通常是在过度暴露于异常视觉环境后发展的,破坏了使眼睛生长与光学功率相匹配的正视化机制。通过全基因组关联研究对与近视风险强烈相关的基因进行的初步筛选表明,efemp1 在近视发展中起作用,但该基因如何影响眼球生长尚不清楚。在这里,我们特异性地在斑马鱼的视网膜中修饰 efemp1 的表达。我们发现,在正常光照下,efemp1 突变体发展出轴向近视、眼睛增大、空间视觉降低和视网膜功能改变。然而,在诱导近视的暗饲养下,与对照鱼相比,突变体保持正视并表现出视网膜功能的变化。efemp1 的修饰改变了眼睛中 efemp1、egr1、tgfb1a、vegfab 和 rbp3 基因的表达,并改变了与近视相关的 EFEMP1、TIMP2 和 MMP2 蛋白在视网膜内的分布。efemp1 的修饰还影响了暗饲养诱导的 vegfab 和 wnt2b 基因以及上述与近视相关蛋白的反应。总之,我们提供了有力的证据表明,光依赖性眼球生长受 efemp1 调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4c2/11625888/e9e38e767b1f/biolopen-13-061741-g1.jpg

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