首页> 外文期刊>Japanese Journal of Ophthalmology >Perturbed intraepithelial differentiation of corneal epithelium in c-Fos-null mice.
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Perturbed intraepithelial differentiation of corneal epithelium in c-Fos-null mice.

机译:c-Fos-null小鼠中角膜上皮的扰动上皮内分化。

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PURPOSE: AP-1 is a transcription factor that plays a pivotal role in regulating cellular homeostasis and which may modulate the differentiation of corneal epithelial cells. We examined the role of c-Fos in the differentiation of corneal epithelial cells by using c-Fos-deficient (c-fos (-/-)) mice. METHODS: Ten adult c-fos (-/-) mice and ten control (c-fos (+/-) or c-fos (+/+)) mice were used. The expression patterns of the mRNA and protein of keratin 12 (K12) were determined to examine the differentiation of cornea-type epithelium. To evaluate the intraepithelial differentiation from basal cells to superficial cells, the ultrastructure of the corneal epithelium was studied. We focused on the formation of desmosomes in the superficial, suprabasal, and basal cell layers, and also on the hemidesmosomes. The number of desmosomes in each epithelial layer was statistically analyzed by using an unpaired t test. The expressions of keratin 14 (K14), desmoglein, E-cadherin, occludin, connexin 43, filaggrin, loricrin, and involucrin were examined to analyze epithelial differentiation. RESULTS: The mRNA and protein of K12 were expressed in the corneal epithelium of c-fos (-/-) and control mice. Ultrastructural observations showed that the number of desmosomes between the basal cells of the corneal epithelia was similar in c-fos (-/-) and control mice. However, there were fewer desmosomes between suprabasal cells and between superficial cells in c-fos (-/-) mice than in control mice. The number of hemidesmosomes in the corneal epithelial cells in c-Fos-null mice was similar to that in control mice. The expressions of the other epithelial cell differentiation markers were not affected by the absence of c-Fos. Ultrastructural observations showed a disarrangement of the corneal epithelium in the c-Fos-null mice. CONCLUSIONS: The absence of c-Fos disturbs the formation of desmosomes in the superficial layers of the corneal epithelium, suggesting a perturbation of intraepithelial differentiation from the basal epithelial cells to the suprabasal and superficial epithelial cells.
机译:目的:AP-1是一种转录因子,在调节细胞稳态中起着关键作用,并且可以调节角膜上皮细胞的分化。我们通过使用c-Fos缺陷(c-fos(-/-))小鼠研究了c-Fos在角膜上皮细胞分化中的作用。方法:使用十只成年c-fos(-/-)小鼠和十只对照(c-fos(+/-)或c-fos(+ / +))小鼠。确定角蛋白12(K12)的mRNA和蛋白的表达模式以检查角膜型上皮的分化。为了评估上皮内从基底细胞向浅表细胞的分化,研究了角膜上皮的超微结构。我们重点研究了浅表层,上基底层和基底细胞层中桥粒的形成以及半桥粒。使用不成对的t检验统计分析每个上皮层中桥粒的数目。检查角蛋白14(K14),桥粒芯蛋白,E-钙粘着蛋白,闭合蛋白,连接蛋白43,丝蛋白,loricrin和involucrin的表达以分析上皮分化。结果:K12的mRNA和蛋白在c-fos(-/-)和对照小鼠的角膜上皮中表达。超微结构观察表明,在c-fos(-/-)和对照小鼠中,角膜上皮基底细胞之间的桥粒数量相似。但是,与对照小鼠相比,c-fos(-/-)小鼠的上基底细胞之间和浅表细胞之间的桥粒少。 c-Fos-null小鼠的角膜上皮细胞中的半脂质体的数量与对照小鼠的相似。其他上皮细胞分化标记的表达不受c-Fos的缺乏影响。超微结构观察显示,c-Fos-null小鼠的角膜上皮排列紊乱。结论:不存在c-Fos干扰了角膜上皮表层的桥粒的形成,提示上皮内分化从基底上皮细胞向基底上皮和表皮上皮细胞分化。

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