Lyu Jungmook, Joo Choun-Ki
Department of Ophthalmology and Visual Science, College of Medicine, The Catholic University of Korea, Seoul, Korea.
Development. 2004 Apr;131(8):1813-24. doi: 10.1242/dev.01060. Epub 2004 Mar 17.
Wnt signaling is implicated in many developmental processes, including cell fate changes. Several members of the Wnt family, as well as other molecules involved in Wnt signaling, including Frizzled receptors, LDL-related protein co-receptors, members of the Dishevelled and Dickkopf families, are known to be expressed in the lens during embryonic or postembryonic development. However, the function of Wnt signaling in lens fiber differentiation remains unknown. Here, we show that GSK-3beta kinase is inactivated and that beta-catenin accumulates during the early stages of lens fiber cell differentiation. In an explant culture system, Wnt conditioned medium (CM) induced the accumulation of beta-crystallin, a marker of fiber cell differentiation, without changing cell shape. In contrast, epithelial cells stimulated with Wnt after priming with FGF elongated, accumulated beta-crystallin, aquaporin-0, p57kip2, and altered their expression of cadherins. Treatment with lithium, which stabilizes beta-catenin, induced the accumulation of beta-crystallin, but explants treated with lithium after FGF priming did not elongate as they did after Wnt application. These results show that Wnts promote the morphological aspects of fiber cell differentiation in a process that requires FGF signaling, but is independent of beta-catenin. Wnt signaling may play an important role in lens epithelial-to-fiber differentiation.
Wnt信号传导参与许多发育过程,包括细胞命运改变。已知Wnt家族的几个成员以及参与Wnt信号传导的其他分子,包括卷曲受体、低密度脂蛋白相关蛋白共受体、散乱蛋白家族和Dickkopf家族的成员,在胚胎期或胚胎后期发育过程中在晶状体中表达。然而,Wnt信号传导在晶状体纤维分化中的功能仍然未知。在这里,我们表明糖原合成酶激酶-3β(GSK-3β)激酶在晶状体纤维细胞分化的早期阶段失活,并且β-连环蛋白积累。在一个外植体培养系统中,Wnt条件培养基(CM)诱导了β-晶状体蛋白(一种纤维细胞分化标志物)的积累,而不改变细胞形状。相比之下,在用成纤维细胞生长因子(FGF)预处理后用Wnt刺激的上皮细胞伸长,并积累了β-晶状体蛋白、水通道蛋白-0、p57kip2,并改变了它们钙黏蛋白的表达。用锂处理可稳定β-连环蛋白,诱导β-晶状体蛋白的积累,但在用FGF预处理后用锂处理的外植体不像用Wnt处理后那样伸长。这些结果表明,Wnt在一个需要FGF信号传导但独立于β-连环蛋白的过程中促进纤维细胞分化的形态学方面。Wnt信号传导可能在晶状体上皮向纤维的分化中起重要作用。