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首页> 外文期刊>Developmental biology >The MAPK(ERK-1,2) pathway integrates distinct and antagonistic signals from TGF alpha and FGF7 in morphogenesis of mouse mammary epithelium
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The MAPK(ERK-1,2) pathway integrates distinct and antagonistic signals from TGF alpha and FGF7 in morphogenesis of mouse mammary epithelium

机译:MAPK(ERK-1,2)通路整合了来自TGF alpha和FGF7的独特和拮抗信号在小鼠乳腺上皮的形态发生中

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Transforming growth factor-a (TGF alpha) and fibroblast growth factor-7 (FGF7) exhibit distinct expression patterns in the mammary gland. Both factors signal through mitogen-activated kinase/extracellular regulated kinase-1,2 (MAPK(ERK1,2)); however, their unique and/or combined contributions to mammary morphogenesis have not been examined. In ex vivo mammary explants, we show that a sustained activation of MAPK(ERK1,2) for 1 h, induced by TGF alpha, was necessary and sufficient to initiate branching morphogenesis, whereas a transient activation (15 min) of MAPK(ERK1,2), induced by FGF7, led to growth without branching. Unlike TGF alpha, FGF7 promoted sustained proliferation as well as ectopic localization of, and increase in, keratin-6 expressing cells. The response of the explants to FGF10 was similar to that to FGF7. Simultaneous stimulation by FGF7 and TGF alpha indicated that the FGF7-induced MAPK(ERK1,2) signaling and associated phenotypes were dominant: FGF7 may prevent branching by suppression of two necessary TGF alpha-induced morphogenetic effectors, matrix metalloproteinase-3 (MMP-3/stromelysin-1), and fibronectin. Our findings indicate that expression of morphogenetic effectors, proliferation, and cell-type decisions during mammary organoid morphogenesis are intimately dependent on the duration of activation of MAPK(ERK1,2) activation. (C) 2007 Published by Elsevier Inc.
机译:转化生长因子-α(TGFα)和成纤维细胞生长因子-7(FGF7)在乳腺中表现出不同的表达模式。这两个因子均通过有丝分裂原激活的激酶/细胞外调节的激酶-1,2(MAPK(ERK1,2))发出信号。然而,尚未检查它们对乳腺形态发生的独特和/或综合作用。在离体乳腺外植体中,我们表明由TGFα诱导的MAPK(ERK1,2)持续激活1小时是必要的,并且足以启动分支形态发生,而MAPK(ERK1, 2)由FGF7诱导,导致无分支生长。与TGFα不同,FGF7促进了表达角蛋白6的细胞的持续增殖以及异位定位和增加。外植体对FGF10的响应类似于对FGF7的响应。 FGF7和TGFα同时刺激表明FGF7诱导的MAPK(ERK1,2)信号传导和相关表型占主导:FGF7可能通过抑制两种必需的TGFα诱导的形态发生效应子基质金属蛋白酶3(MMP-3)来阻止分支/ stromelysin-1)和纤连蛋白。我们的发现表明,在乳腺类器官形态发生过程中,形态发生效应子的表达,增殖和细胞类型的决定与MAPK(ERK1,2)激活的持续时间密切相关。 (C)2007年由Elsevier Inc.出版

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