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The Progestin Receptor Interactome in the Female Mouse Hypothalamus: Interactions with Synaptic Proteins Are Isoform Specific and Ligand Dependent

机译:雌性小鼠下丘脑中的孕激素受体相互作用:与突触蛋白的相互作用是同工型特异性和配体依赖性的。

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摘要

Progestins bind to the progestin receptor (PR) isoforms, PR-A and PR-B, in brain to influence development, female reproduction, anxiety, and stress. Hormone-activated PRs associate with multiple proteins to form functional complexes. In the present study, proteins from female mouse hypothalamus that associate with PR were isolated using affinity pull-down assays with glutathione S-transferase–tagged mouse PR-A and PR-B. Using complementary proteomics approaches, reverse phase protein array (RPPA) and mass spectrometry, we identified hypothalamic proteins that interact with PR in a ligand-dependent and isoform-specific manner and were confirmed by Western blot. Synaptic proteins, including synapsin-I and synapsin-II, interacted with agonist-bound PR isoforms, suggesting that both isoforms function in synaptic plasticity. In further support, synaptogyrin-III and synapsin-III associated with PR-A and PR-B, respectively. PR also interacted with kinases, including c-Src, mTOR, and MAPK1, confirming phosphorylation as an integral process in rapid effects of PR in the brain. Consistent with a role in transcriptional regulation, PR associated with transcription factors and coactivators in a ligand-specific and isoform-dependent manner. Interestingly, both PR isoforms associated with a key regulator of energy homeostasis, FoxO1, suggesting a novel role for PR in energy metabolism. Because many identified proteins in this PR interactome are synaptic proteins, we tested the hypothesis that progestins function in synaptic plasticity. Indeed, progesterone enhanced synaptic density, by increasing synapsin-I–positive synapses, in rat primary cortical neuronal cultures. This novel combination of RPPA and mass spectrometry allowed identification of PR action in synaptic remodeling and energy homeostasis and reveals unique roles for progestins in brain function and disease.
机译:孕激素与大脑中的孕激素受体(PR)亚型PR-A和PR-B结合,影响发育,女性生殖,焦虑和压力。激素激活的PRs与多种蛋白质结合形成功能复合物。在本研究中,使用带有谷胱甘肽S-转移酶标签的小鼠PR-A和PR-B的亲和力下拉测定法从雌性小鼠下丘脑中与PR相关的蛋白质中分离出来。使用互补的蛋白质组学方法,反相蛋白阵列(RPPA)和质谱,我们确定了下丘脑蛋白与PR相互作用的配体依赖和同工型特异性的方式,并通过蛋白质印迹证实。包括突触素I和突触素II在内的突触蛋白与激动剂结合的PR亚型相互作用,表明这两种亚型均在突触可塑性中起作用。在进一步的支持下,突触素-III和突触素-III分别与PR-A和PR-B相关。 PR还与包括c-Src,mTOR和MAPK1在内的激酶相互作用,从而证实磷酸化是PR在大脑中快速作用的一个整体过程。与转录调控中的作用一致,PR以配体特异性和异构体依赖性方式与转录因子和共激活因子相关。有趣的是,两种PR同工型均与能量稳态的关键调节因子FoxO1有关,表明PR在能量代谢中具有新作用。因为在此PR相互作用基因组中许多已鉴定的蛋白是突触蛋白,所以我们测试了孕激素在突触可塑性中起作用的假设。实际上,在大鼠原代皮层神经元培养物中,孕酮通过增加突触蛋白I阳性突触来增强突触密度。 RPPA和质谱的这种新颖结合可以鉴定PR在突触重塑和能量稳态中的作用,并揭示孕激素在脑功能和疾病中的独特作用。

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