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一种叉头基因,FoxE3,对于晶状体上皮细胞增殖和晶状体泡的闭合至关重要。

A forkhead gene, FoxE3, is essential for lens epithelial proliferation and closure of the lens vesicle.

作者信息

Blixt A, Mahlapuu M, Aitola M, Pelto-Huikko M, Enerbäck S, Carlsson P

机构信息

Department of Molecular Biology, Göteborg University, The Lundberg Laboratory, Medicinaregatan 9C, Box 462, S-405 30 Göteborg, Sweden.

出版信息

Genes Dev. 2000 Jan 15;14(2):245-54.

Abstract

In the mouse mutant dysgenetic lens (dyl) the lens vesicle fails to separate from the ectoderm, causing a fusion between the lens and the cornea. Lack of a proliferating anterior lens epithelium leads to absence of secondary lens fibers and a dysplastic, cataractic lens. We report the cloning of a gene, FoxE3, encoding a forkhead/winged helix transcription factor, which is expressed in the developing lens from the start of lens placode induction and becomes restricted to the anterior proliferating cells when lens fiber differentiation begins. We show that FoxE3 is colocalized with dyl in the mouse genome, that dyl mice have mutations in the part of FoxE3 encoding the DNA-binding domain, and that these mutations cosegregate with the dyl phenotype. During embryonic development, the primordial lens epithelium is formed in an apparently normal way in dyl mutants. However, instead of the proliferation characteristic of a normal lens epithelium, the posterior of these cells fail to divide and show signs of premature differentiation, whereas the most anterior cells are eliminated by apoptosis. This implies that FoxE3 is essential for closure of the lens vesicle and is a factor that promotes survival and proliferation, while preventing differentiation, in the lens epithelium.

摘要

在小鼠突变体发育不全晶状体(dyl)中,晶状体泡无法与外胚层分离,导致晶状体与角膜融合。缺乏增殖性的前晶状体上皮会导致次级晶状体纤维缺失以及发育异常、白内障性晶状体。我们报告了一个基因FoxE3的克隆,该基因编码一种叉头/翼状螺旋转录因子,从晶状体原基诱导开始就在发育中的晶状体中表达,并且在晶状体纤维分化开始时局限于前增殖细胞。我们表明FoxE3在小鼠基因组中与dyl共定位,dyl小鼠在FoxE3编码DNA结合结构域的部分存在突变,并且这些突变与dyl表型共分离。在胚胎发育过程中,dyl突变体中的原始晶状体上皮以明显正常的方式形成。然而,这些细胞的后部没有正常晶状体上皮的增殖特征,而是无法分裂并显示出过早分化的迹象,而最前部的细胞则通过凋亡被清除。这意味着FoxE3对于晶状体泡的闭合至关重要,并且是促进晶状体上皮细胞存活和增殖、同时防止其分化的一个因子。

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