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首页> 外文期刊>Development >TGF beta signaling inhibits goblet cell differentiation via SPDEF in conjunctival epithelium
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TGF beta signaling inhibits goblet cell differentiation via SPDEF in conjunctival epithelium

机译:TGFβ信号转导通过结膜上皮中的SPDEF抑制杯状细胞分化

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The ocular surface epithelia, including the stratified but non-keratinized corneal, limbal and conjunctival epithelium, in concert with the epidermal keratinized eyelid epithelium, function together to maintain eye health and vision. Abnormalities in cellular proliferation or differentiation in any of these surface epithelia are central in the pathogenesis of many ocular surface disorders. Goblet cells are important secretory cell components of various epithelia, including the conjunctiva; however, mechanisms that regulate goblet cell differentiation in the conjunctiva are not well understood. Herein, we report that conditional deletion of transforming growth factor beta receptor II (Tgfbr2) in keratin 14-positive stratified epithelia causes ocular surface epithelial hyperplasia and conjunctival goblet cell expansion that invaginates into the subconjunctival stroma in the mouse eye. We found that, in the absence of an external phenotype, the ocular surface epithelium develops properly, but young mice displayed conjunctival goblet cell expansion, demonstrating that TGF beta signaling is required for normal restriction of goblet cells within the conjunctiva. We observed increased expression of SAM-pointed domain containing ETS transcription factor (SPDEF) in stratified conjunctival epithelial cells in Tgfbr2 cKO mice, suggesting that TGF beta restricted goblet cell differentiation directly by repressing Spdef transcription. Gain of function of Spdef in keratin 14-positive epithelia resulted in the ectopic formation of goblet cells in the eyelid and peripheral cornea in adult mice. We found that Smad3 bound two distinct sites on the Spdef promoter and that treatment of keratin 14-positive cells with TGF beta inhibited SPDEF activation, thereby identifying a novel mechanistic role for TGF beta in regulating goblet cell differentiation.
机译:眼表上皮,包括分层但未角化的角膜,角膜缘和结膜上皮,与表皮角化的眼睑上皮一起起作用,共同维持眼睛的健康和视力。在任何这些表面上皮细胞中,细胞增殖或分化异常是许多眼表疾病的发病机制的中心。杯状细胞是包括结膜在内的各种上皮细胞的重要分泌细胞成分。然而,调节结膜中杯状细胞分化的机制尚不清楚。在这里,我们报告有条件的角蛋白14阳性分层上皮细胞中的转化生长因子β受体II(Tgfbr2)的条件缺失导致眼表上皮增生和结膜杯状细胞扩张,并在小鼠眼中进入结膜下基质。我们发现,在没有外部表型的情况下,眼表上皮能够正常发育,但幼鼠显示结膜杯状细胞扩张,表明正常的结膜内杯状细胞限制需要TGFβ信号传导。我们观察到在Tgfbr2 cKO小鼠的结膜上皮细胞中,含ET转录因子(SPDEF)的SAM指向结构域的表达增加,这表明TGFβ通过抑制Spdef转录直接限制了杯状细胞的分化。 Spdef在角蛋白14阳性上皮细胞中的功能获得导致成年小鼠眼睑和周围角膜中杯状细胞异位形成。我们发现,Smad3结合了Spdef启动子上的两个不同位点,并且用TGFβ治疗角蛋白14阳性细胞抑制了SPDEF活化,从而确定了TGFβ在调节杯状细胞分化中的新机制。

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