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PEA3 transcription factors are expressed in tissues undergoing branching morphogenesis and promote formation of duct-like structures by mammary epithelial cells in vitro

机译:PEA3转录因子在经历分支形态发生的组织中表达,并在体外促进乳腺上皮细胞形成导管样结构

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摘要

The genetic program that controls reciprocal tissue interactions during epithelial organogenesis is still poorly understood. Erm, Er81 and Pea3 are three highly related transcription factors belonging to the Ets family, within which they form the PEA3 group. Little information is yet available regarding the function of these transcription factors. We have previously used in situ hybridization to compare their expression pattern during critical stages of murine embryogenesis [Oncogene 15 (1997), 937; Mech. Dev. 108 (2001), 191]. In this study, we have examined the expression of PEA3 group members during organogenesis of the lung, salivary gland, kidney, and mammary gland. In all of these developmental settings, we observed a tight correlation between branching morphogenesis and the expression of specific members of the PEA3 group. To assess the functional relevance of these findings, Erm and Pea3 were overexpressed in the TAC-2.1 mammary epithelial cell line, which has the ability to form branching duct-like structures when grown in collagen gels. We found that overexpression of Erm and Pea3 markedly enhances branching tubulogenesis of TAC-2.1 cells and also promotes their invasion into a collagen matrix. Collectively, these findings suggest that the differential expression of PEA3 group transcription factors has an important role in the regulation of branching morphogenesis and raise the question of their implication in branching signaling. © 2003 Elsevier Science (USA). All rights reserved.
机译:在上皮器官发生过程中控制相互组织相互作用的遗传程序仍然知之甚少。 Erm,Er81和Pea3是属于Ets家族的三个高度相关的转录因子,在其中它们形成PEA3组。关于这些转录因子的功能的信息很少。我们先前已经使用原位杂交来比较它们在鼠胚胎发生的关键阶段的表达模式[Oncogene 15(1997),937;机甲开发人员108(2001),191]。在这项研究中,我们检查了肺,唾液腺,肾脏和乳腺器官发生过程中PEA3组成员的表达。在所有这些发育环境中,我们观察到分支形态发生与PEA3组特定成员的表达之间紧密相关。为了评估这些发现的功能相关性,Erm和Pea3在TAC-2.1乳腺上皮细胞系中过表达,当在胶原蛋白凝胶中生长时,它具有形成分支导管状结构的能力。我们发现,Erm和Pea3的过表达显着增强了TAC-2.1细胞的分支微管生成,并且还促进了它们向胶原基质的侵袭。总的来说,这些发现表明,PEA3基团转录因子的差异表达在分支形态发生的调节中具有重要作用,并提出了它们在分支信号传导中的含义的问题。 ©2003 Elsevier Science(美国)。版权所有。

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