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类固醇受体辅激活因子2对孕酮依赖的子宫功能和乳腺形态发生至关重要:来自小鼠的见解及其对人类的启示。

Steroid receptor coactivator 2 is essential for progesterone-dependent uterine function and mammary morphogenesis: insights from the mouse--implications for the human.

作者信息

Mukherjee Atish, Amato Paula, Allred D Craig, Fernandez-Valdivia Rodrigo, Nguyen Jonathan, O'Malley Bert W, DeMayo Francesco J, Lydon John P

机构信息

Department of Molecular and Cellular Biology, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.

出版信息

J Steroid Biochem Mol Biol. 2006 Dec;102(1-5):22-31. doi: 10.1016/j.jsbmb.2006.09.007. Epub 2006 Oct 12.

Abstract

While the indispensability of the progesterone receptor (PR) in female reproduction and mammary morphogenesis is acknowledged, the coregulators preferentially recruited by PR to mediate its in vivo effects have yet to be fully delineated. To further parse the roles of steroid receptor coactivator (SRC)/p160 family members in P-dependent physiological processes, genetic approaches were employed to generate a mouse model (PR(Cre/+)SRC-2(flox/flox)) in which SRC-2 function was ablated specifically in cell-types that express the PR. Fertility evaluation revealed that while ovulation occurred normally in the PR(Cre/+)SRC-2(flox/flox) mouse, uterine function was markedly affected. Absence of SRC-2 in PR positive uterine cells contributed to an early block in embryo implantation, a phenotype not shared by knockouts for SRC-1 or -3. Although the PR(Cre/+)SRC-2(flox/flox) uterus could mount a partial decidual response, removal of SRC-1 in the PR(Cre/+)SRC-2(flox/flox) uterus resulted in a complete block in decidualization, confirming that uterine SRC-2 and -1 are both required for P-initiated transcriptional programs which lead to full decidualization. In the case of the mammary gland, whole-mount and histological analyses revealed the absence of significant branching morphogenesis in the hormone-treated PR(Cre/+)SRC-2(flox/flox) mammary gland, reinforcing an important role for mammary SRC-2 in cellular proliferative events that require PR. Based on the above and the observation that SRC-2 is expressed in many of the uterine and mammary cell-lineages in the human as observed in the mouse, we suggest that further investigations are warranted to gain additional insights into SRC-2's involvement in normal (and possibly abnormal) uterine and mammary cellular responses to progestins.

摘要

虽然孕酮受体(PR)在雌性生殖和乳腺形态发生中的不可或缺性已得到公认,但PR优先招募以介导其体内效应的共调节因子尚未完全明确。为了进一步解析类固醇受体共激活因子(SRC)/p160家族成员在孕酮依赖性生理过程中的作用,采用遗传学方法构建了一种小鼠模型(PR(Cre/+)SRC-2(flox/flox)),其中SRC-2的功能在表达PR的细胞类型中被特异性敲除。生育力评估显示,虽然PR(Cre/+)SRC-2(flox/flox)小鼠排卵正常,但子宫功能受到显著影响。PR阳性子宫细胞中缺乏SRC-2导致胚胎着床早期受阻,这一表型在SRC-1或-3基因敲除小鼠中未出现。虽然PR(Cre/+)SRC-2(flox/flox)子宫可以产生部分蜕膜反应,但在PR(Cre/+)SRC-2(flox/flox)子宫中去除SRC-1会导致蜕膜化完全受阻,证实子宫SRC-2和-1都是孕酮启动的导致完全蜕膜化的转录程序所必需的。在乳腺方面,整体和组织学分析显示,激素处理的PR(Cre/+)SRC-2(flox/flox)乳腺中没有明显的分支形态发生,这进一步证明了乳腺SRC-2在需要PR的细胞增殖事件中的重要作用。基于上述情况以及在小鼠中观察到的SRC-2在人类许多子宫和乳腺细胞谱系中表达的现象,我们建议有必要进行进一步研究,以更深入了解SRC-2在子宫和乳腺对孕激素的正常(以及可能的异常)细胞反应中的作用。

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