Wyatt Leila, Wadham Carol, Crocker Lesley A, Lardelli Michael, Khew-Goodall Yeesim
Hanson Institute, Institute of Medical and Veterinary Science, Adelaide SA 5000, Australia.
J Cell Biol. 2007 Sep 24;178(7):1223-35. doi: 10.1083/jcb.200705035.
Epithelial-mesenchymal transition (EMT), crucial during embryogenesis for new tissue and organ formation, is also considered to be a prerequisite to cancer metastasis. We report here that the protein tyrosine phosphatase Pez is expressed transiently in discrete locations in developing brain, heart, pharyngeal arches, and somites in zebrafish embryos. We also find that Pez knock-down results in defects in these organs, indicating a crucial role in organogenesis. Overexpression of Pez in epithelial MDCK cells causes EMT, with a drastic change in cell morphology and function that is accompanied by changes in gene expression typical of EMT. Transfection of Pez induced TGFbeta signaling, critical in developmental EMT with a likely role also in oncogenic EMT. In zebrafish, TGFbeta3 is co- expressed with Pez in a number of tissues and its expression was lost from these tissues when Pez expression was knocked down. Together, our data suggest Pez plays a crucial role in organogenesis by inducing TGFbeta and EMT.
上皮-间质转化(EMT)在胚胎发育过程中对新组织和器官的形成至关重要,同时也被认为是癌症转移的一个先决条件。我们在此报告,蛋白酪氨酸磷酸酶Pez在斑马鱼胚胎发育中的脑、心脏、咽弓和体节的离散位置短暂表达。我们还发现,敲低Pez会导致这些器官出现缺陷,表明其在器官发生中起关键作用。在上皮性MDCK细胞中过表达Pez会导致EMT,细胞形态和功能发生剧烈变化,并伴随着EMT典型的基因表达变化。转染Pez会诱导TGFβ信号传导,这在发育性EMT中至关重要,在致癌性EMT中可能也起作用。在斑马鱼中,TGFβ3在许多组织中与Pez共表达,当敲低Pez表达时,这些组织中TGFβ3的表达会消失。总之,我们的数据表明Pez通过诱导TGFβ和EMT在器官发生中起关键作用。