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孕酮启动Wnt-β-连环蛋白信号通路,但雌二醇是大鼠子宫基质细胞核激活和同步增殖所必需的。

Progesterone initiates Wnt-beta-catenin signaling but estradiol is required for nuclear activation and synchronous proliferation of rat uterine stromal cells.

作者信息

Rider Virginia, Isuzugawa Kazuto, Twarog Meryl, Jones Stacy, Cameron Brent, Imakawa Kazuhiko, Fang Jianwen

机构信息

Department of Biology, Pittsburg State University, Pittsburg, Kansas 66762, USA.

出版信息

J Endocrinol. 2006 Dec;191(3):537-48. doi: 10.1677/joe.1.07030.

Abstract

Progesterone pretreatment of ovariectomized rat uteri increases the number of synchronously proliferating stromal cells in response to estradiol 17-beta. To identify the signals involved in stimulating synchronous proliferation, sexually mature ovariectomized rats were injected with progesterone (2 mg) for 3 consecutive days. Estradiol 17-beta (0.2 microg) was administered to initiate cell cycle entry. Uterine samples were removed at various times after hormone administration and changes in wingless (Wnt) pathway effectors and gene targets were identified by microarray. Progesterone pretreatment decreased glycogen synthase kinase-3beta (GSK-3beta) and increased expression of T-cell factor/lymphoid enhancer factor (TCF/LEF). GSK-3beta protein decreased markedly in the uterine stroma of progesterone-pretreated uteri with the concomitant appearance of beta-catenin in these stromal cells. Translocation of beta-catenin from the cytosol to the nuclei in progesterone-pretreated stromal cells was stimulated in response to estradiol. Beta-catenin binding to TCF/LEF increased (P<0.05) in progesterone-pretreated uteri in response to estradiol. Progesterone stimulated the expression of the Wnt target gene urokinase plasminogen activator receptor (uPA-R) in the periluminal uterine stromal cells. The expression of uPA-R increased in progesterone-pretreated stromal cells in response to estradiol administration. Together, the results indicate that progesterone initiates Wnt signaling in the uterine stroma by down-regulating GSK-3beta. However, nuclear translocation of beta-catenin and sufficient complex formation with TCF/LEF to activate stromal cell cycle entry requires estradiol. Stimulation of a uterine stromal cell line to proliferate and differentiate resulted in beta-catenin accumulation, suggesting that endocrine-dependent Wnt signaling controls proliferation and differentiation (decidualization).

摘要

对去卵巢大鼠子宫进行孕酮预处理,可增加其对17-β雌二醇产生同步增殖的基质细胞数量。为了确定参与刺激同步增殖的信号,对性成熟的去卵巢大鼠连续3天注射孕酮(2毫克)。给予17-β雌二醇(0.2微克)以启动细胞周期进入。在激素给药后的不同时间取出子宫样本,通过微阵列鉴定无翅型(Wnt)信号通路效应器和基因靶点的变化。孕酮预处理降低了糖原合酶激酶-3β(GSK-3β),并增加了T细胞因子/淋巴增强因子(TCF/LEF)的表达。在孕酮预处理子宫的子宫基质中,GSK-3β蛋白明显减少,同时这些基质细胞中出现β-连环蛋白。在孕酮预处理的基质细胞中,β-连环蛋白从细胞质向细胞核的转位在雌二醇刺激下增加。在孕酮预处理的子宫中,雌二醇刺激后β-连环蛋白与TCF/LEF的结合增加(P<0.05)。孕酮刺激子宫周缘基质细胞中Wnt靶基因尿激酶型纤溶酶原激活物受体(uPA-R)的表达。在给予雌二醇后,孕酮预处理的基质细胞中uPA-R的表达增加。总之,结果表明孕酮通过下调GSK-3β启动子宫基质中的Wnt信号。然而,β-连环蛋白的核转位以及与TCF/LEF形成足够的复合物以激活基质细胞周期进入需要雌二醇。刺激子宫基质细胞系增殖和分化导致β-连环蛋白积累,表明内分泌依赖性Wnt信号控制增殖和分化(蜕膜化)。

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