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通过对驱动复杂性小眼症的一个调控变异的研究深入了解FOXE3转录网络和疾病机制

Insights Into the FOXE3 Transcriptional Network and Disease Mechanisms From the Investigation of a Regulatory Variant Driving Complex Microphthalmia.

作者信息

Plaisancié Julie, Angée Clémentine, Erjavec Elisa, Raymond-Letron Isabelle, Douet Jean-Yves, Goetz Mathilde, Vincent-Delorme Catherine, Karemaker Ino D, Baltissen Marijke, Vermeulen Michiel, Valdivia Leonardo, Jabot-Hanin Fabienne, David Pierre, Hadjadj Djihad, Monsef Yanad Abou, Lyazrhi Faouzi, Calvas Patrick, Rozet Jean-Michel, Chassaing Nicolas, Fares-Taie Lucas

机构信息

Laboratoire de Référence (LBMR) des anomalies malformatives de l'œil, Institut Fédératif de Biologie (IFB), CHU de Toulouse, Toulouse, France.

Centre de Référence des Affections Rares en Génétique Ophtalmologique (CARGO), site constitutif, CHU de Toulouse, Toulouse, France.

出版信息

Invest Ophthalmol Vis Sci. 2025 Aug 1;66(11):47. doi: 10.1167/iovs.66.11.47.

Abstract

PURPOSE

FOXE3 encodes a highly conserved, lens-enriched transcription factor essential for eye development. Biallelic mutations in FOXE3 are associated with a spectrum of ocular anomalies, ranging from congenital cataracts to complex microphthalmia (CM), with severity and penetrance correlating with genotype. This study aimed to investigate the regulatory landscape of FOXE3 and its contribution to CM.

METHODS

In a patient with CM, a truncating FOXE3 variation (p.Cys240*) was identified alongside a second, trans-acting regulatory variant (rv: rs745674596G>A) located 3 kb upstream of FOXE3. To investigate its functional impact, mouse models were generated carrying either the rv or a frameshift (fs) mutation in homozygosity (Foxe3rv/rv, Foxe3fs/fs) or in compound heterozygosity (Foxe3rv/fs). Ocular phenotypes were characterized, and molecular analyses were conducted to assess FOXE3 expression and transcriptional regulation.

RESULTS

Phenotypic severity followed a progressive pattern from Foxe3rv/rv to Foxe3rv/fs, with Foxe3fs/fs consistently exhibiting CM, mirroring genotype-dependent effects observed in humans. Protein levels, but not mRNA levels, correlated with ocular phenotype, with the frameshift mutation leading to pronounced mRNA overexpression in embryos. In Foxe3fs/fs mice, CM resulted from early anterior lens epithelium disorganization, triggering progressive lens degeneration and ocular involution. Transcription factor binding studies identified USF2 as a key regulator of FOXE3 expression, positioning it as a novel candidate in ocular development and disease.

CONCLUSIONS

This study highlights the critical role of regulatory variants in ocular pathology, proposes a potentially novel mechanism for microphthalmia through lens degeneration, and identifies USF2 as a potential contributor to the FOXE3-regulatory network that remains largely unknown.

摘要

目的

FOXE3编码一种高度保守的、在晶状体中高度富集的转录因子,对眼睛发育至关重要。FOXE3的双等位基因突变与一系列眼部异常有关,从先天性白内障到复杂小眼畸形(CM),其严重程度和外显率与基因型相关。本研究旨在探究FOXE3的调控格局及其对CM的作用。

方法

在一名CM患者中,鉴定出一种截短型FOXE3变异(p.Cys240*),同时在FOXE3上游3 kb处发现了第二个反式作用调控变异(rv:rs745674596G>A)。为研究其功能影响,构建了纯合携带rv或移码(fs)突变(Foxe3rv/rv、Foxe3fs/fs)或复合杂合(Foxe3rv/fs)的小鼠模型。对眼部表型进行了特征描述,并进行了分子分析以评估FOXE3的表达和转录调控。

结果

表型严重程度从Foxe3rv/rv到Foxe3rv/fs呈渐进模式,Foxe3fs/fs始终表现出CM,反映了在人类中观察到的基因型依赖性效应。蛋白质水平而非mRNA水平与眼部表型相关,移码突变导致胚胎中mRNA明显过表达。在Foxe3fs/fs小鼠中,CM是由早期前晶状体上皮组织紊乱引起的,引发了晶状体的渐进性退变和眼球退化。转录因子结合研究确定USF2是FOXE3表达的关键调节因子,将其定位为眼部发育和疾病中的一个新候选因子。

结论

本研究突出了调控变异在眼部病理学中的关键作用,提出了一种通过晶状体退变导致小眼畸形的潜在新机制,并确定USF2是FOXE3调控网络中一个潜在的贡献因子,而该网络在很大程度上仍不为人知。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ae2/12383885/24422022b33b/iovs-66-11-47-f001.jpg

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