Bilodeau Steve, Vallette-Kasic Sophie, Gauthier Yves, Figarella-Branger Dominique, Brue Thierry, Berthelet France, Lacroix André, Batista Dalia, Stratakis Constantine, Hanson Jeanette, Meij Björn, Drouin Jacques
Laboratoire de génétique moléculaire, Institut de recherches cliniques de Montréal (IRCM), Montréal, Québec H2W 1R7, Canada.
Genes Dev. 2006 Oct 15;20(20):2871-86. doi: 10.1101/gad.1444606.
Negative feedback regulation of the proopiomelanocortin (POMC) gene by the glucocorticoid (Gc) receptor (GR) is a critical feature of the hypothalamo-pituitary-adrenal axis, and it is in part exerted by trans-repression between GR and the orphan nuclear receptors related to NGFI-B. We now show that Brg1, the ATPase subunit of the Swi/Snf complex, is essential for this trans-repression and that Brg1 is required in vivo to stabilize interactions between GR and NGFI-B as well as between GR and HDAC2. Whereas Brg1 is constitutively present at the POMC promoter, recruitment of GR and HDAC2 is ligand-dependent and results in histone H4 deacetylation of the POMC locus. In addition, GR-dependent repression inhibits promoter clearance by RNA polymerase II. Thus, corecruitment of repressor and activator at the promoter and chromatin modification jointly contribute to trans-repression initiated by direct interactions between GR and NGFI-B. Loss of Brg1 or HDAC2 should therefore produce Gc resistance, and we show that approximately 50% of Gc-resistant human and dog corticotroph adenomas, which are the hallmark of Cushing disease, are deficient in nuclear expression of either protein. In addition to providing a molecular basis for Gc resistance, these deficiencies may also contribute to the tumorigenic process.
糖皮质激素(Gc)受体(GR)对促肾上腺皮质激素原(POMC)基因的负反馈调节是下丘脑-垂体-肾上腺轴的一个关键特征,部分是通过GR与与NGFI-B相关的孤儿核受体之间的反式抑制来实现的。我们现在表明,Swi/Snf复合物的ATP酶亚基Brg1对于这种反式抑制至关重要,并且在体内Brg1是稳定GR与NGFI-B以及GR与HDAC2之间相互作用所必需的。虽然Brg1组成性地存在于POMC启动子处,但GR和HDAC2的募集是配体依赖性的,并导致POMC基因座的组蛋白H4去乙酰化。此外,GR依赖性抑制会抑制RNA聚合酶II的启动子清除。因此,启动子处阻遏物和激活物的共同募集以及染色质修饰共同促成了由GR与NGFI-B之间直接相互作用引发的反式抑制。因此,Brg1或HDAC2的缺失应该会产生Gc抵抗,并且我们表明,大约50%的Gc抵抗性人类和犬促肾上腺皮质激素腺瘤(库欣病的标志)缺乏这两种蛋白的核表达。除了为Gc抵抗提供分子基础外,这些缺陷可能也有助于肿瘤发生过程。