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研究资源:乳腺分支形态发生背后的孕激素受体靶标组

Research resource: progesterone receptor targetome underlying mammary gland branching morphogenesis.

作者信息

Lain Ashlee R, Creighton Chad J, Conneely Orla M

机构信息

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

出版信息

Mol Endocrinol. 2013 Oct;27(10):1743-61. doi: 10.1210/me.2013-1144. Epub 2013 Aug 26.

Abstract

Progesterone (P4)-activated progesterone receptors (PRs) play an essential role in driving pregnancy-associated mammary ductal side-branching morphogenesis and alveologenesis. However, the global cistromic and transcriptome responses that are required to elicit P4-dependent branching morphogenesis have not been elucidated. By combining chromatin immunoprecipitation followed by deep sequencing to identify genome-wide PR-binding sites in PR-positive luminal epithelial cells with global gene expression signatures acutely regulated by PRs in the mammary gland, we have identified a mammary epithelial PR targetome associated with active P4-dependent branching morphogenesis in vivo. We demonstrate that P4-induced side-branching is initiated by epithelial cell rearrangement into a multilayered epithelium that sprouts laterally from quiescent ducts via a mechanism requiring P4-dependent activation of Rac-GTPase signaling. We identify effectors of Rac-GTPases as direct transcriptional targets of PRs, and we demonstrate that disruption of the P4-activated Rac-GTPase signaling axis is sufficient to eliminate P4-dependent side-branching. Our data reveal that the molecular mediators of P4-dependent ductal side-branching overlap with those implicated in breast cancer.

摘要

孕酮(P4)激活的孕酮受体(PRs)在驱动与妊娠相关的乳腺导管侧支形态发生和腺泡形成中起重要作用。然而,引发P4依赖性分支形态发生所需的全基因组顺式作用元件组和转录组反应尚未阐明。通过结合染色质免疫沉淀后深度测序以鉴定PR阳性腔上皮细胞中的全基因组PR结合位点,并结合乳腺中受PRs急性调控的全基因组基因表达特征,我们确定了一个与体内活跃的P4依赖性分支形态发生相关的乳腺上皮PR靶标组。我们证明,P4诱导的侧支形成是由上皮细胞重排为多层上皮开始的,该多层上皮通过一种需要P4依赖性激活Rac-GTPase信号传导的机制从静止导管侧向发芽。我们确定Rac-GTPases的效应器是PRs的直接转录靶标,并证明破坏P4激活的Rac-GTPase信号轴足以消除P4依赖性侧支形成。我们的数据表明,P4依赖性导管侧支形成的分子介质与乳腺癌中涉及的介质重叠。

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