淋巴增强结合因子1 (Lymphoid enher -binding factor 1)是脊椎动物特异性Lef1/Tcf1亚家族的代表,是人内皮细胞wnt - β -catenin通路的靶基因,调控基质金属蛋白酶2的表达,促进内皮细胞侵袭。

Q4 Neuroscience Vascular Cell Pub Date : 2011-12-14 DOI:10.1186/2045-824X-3-28
Marina Planutiene, Kestutis Planutis, Randall F Holcombe
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引用次数: 39

摘要

背景:Wnt信号在许多类型的癌症和正常生理过程中被激活。多种与wnt相关的分泌因子可能通过直接作用于内皮细胞而影响肿瘤微环境和正常组织中的血管生成。Wnt在血管生成中的作用机制尚不明确。我们假设内皮细胞对Wnt信号有反应,而脊椎动物特异性Wnt/ β -连环蛋白通量诱导转录因子亚家族Lef1/Tcf1的成员介导了这种反应并促进了内皮细胞的侵袭。方法:将人内皮细胞系EAhy926暴露于Wnt3a或直接转染Lef1。结果包括核β -catenin的评估,使用SuperTOPflash报告基因法检测Wnt的通量,诱导Lef1转录,诱导基质金属蛋白酶(MMP)-2转录,细胞增殖和细胞通过体外基质侵袭。在Lef1沉默siRNA存在的情况下,对MMP2的影响也进行了评估。结果:Wnt3a增加核β -catenin,上调Wnt/ β -catenin通量。Wnt3a增加了Lef1的转录和Lef1启动子的活性。Wnt3a处理和Lef1过表达均诱导MMP2转录,但在Lef1 siRNA存在下,这种作用完全消除。抑制Lef1也降低了MMP2的基础水平,这表明即使在没有外源Wnt通路激活的情况下,Lef1也能调节MMP2的表达。Lef1轻微增加EAhy926细胞的增殖,并使侵袭增加2倍以上。结论:EAhy926细胞响应Wnt3a配体激活典型Wnt信号。Wnt靶点Lef1特异性调控MMP2在这些细胞中的表达,促进内皮细胞侵袭。EAhy926细胞系为研究血管生成和Wnt信号在内皮细胞功能中的作用提供了一种替代原代人脐静脉内皮细胞(HUVEC)的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Lymphoid enhancer-binding factor 1, a representative of vertebrate-specific Lef1/Tcf1 sub-family, is a Wnt-beta-catenin pathway target gene in human endothelial cells which regulates matrix metalloproteinase-2 expression and promotes endothelial cell invasion.

Background: Wnt signaling is activated in many types of cancer and normal physiological processes. Various Wnt-related secreted factors may influence angiogenesis both in the tumor microenvironment and in normal tissues by direct action on endothelial cells. The mechanism of this Wnt action in angiogenesis is not well defined. We hypothesize that endothelial cells are responsive to Wnt signals and that Lef1, a member of the vertebrate-specific Wnt/beta-catenin throughput-inducing transcription factors' sub-family Lef1/Tcf1, mediates this responsiveness and promotes endothelial cell invasion.

Methods: A human endothelial cell line, EAhy926 was exposed to Wnt3a or directly transfected with Lef1. Readouts included assessment of nuclear beta-catenin, Wnt throughput with a SuperTOPflash reporter assay, induction of Lef1 transcription, induction of matrix metalloproteinase (MMP)-2 transcription, cell proliferation and cell invasion through a matrix in vitro. The effects on MMP2 were also evaluated in the presence of Lef1 silencing siRNA.

Results: Wnt3a increased nuclear beta-catenin and up-regulated Wnt/beta-catenin throughput. Wnt3a increased Lef1 transcription and activity of the Lef1 promoter. Both Wnt3a treatment and Lef1 overexpression induced MMP2 transcription but this effect was completely abrogated in the presence of Lef1 siRNA. Inhibition of Lef1 also reduced basal MMP2 levels suggesting that Lef1 regulates MMP2 expression even in the absence of exogenous Wnt pathway activation. Lef1 slightly increased proliferation of EAhy926 cells and increased invasion by more than two-fold.

Conclusions: EAhy926 cells activate canonical Wnt signaling in response to Wnt3a ligand. The Wnt target Lef1 specifically regulates MMP2 expression in these cells and promotes endothelial cell invasion. The EAhy926 cell line provides a convenient alternative to primary human umbilical vein endothelial cells (HUVEC) in the study of angiogenesis and the role of Wnt signaling on endothelial cell function.

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Vascular Cell
Vascular Cell Neuroscience-Neurology
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