Laryea Gloria, Schütz Günther, Muglia Louis J
MD/PhD, 3333 Burnet Avenue, ML 7009, Cincinnati, Ohio 45229.
Mol Endocrinol. 2013 Oct;27(10):1655-65. doi: 10.1210/me.2013-1187. Epub 2013 Aug 26.
The glucocorticoid receptor (GR) regulates hypothalamic-pituitary-adrenal (HPA) axis activity during the stress response. The paraventricular nucleus (PVN) is a major site of negative feedback to coordinate the degree of the HPA axis activity with the magnitude of the exposed stressor. To define the function of endogenous PVN GR, we used Cre-loxP technology to disrupt different GR exons in Sim1-expressing neurons of the hypothalamus. GR exon 2-deleted mice (Sim1Cre-GRe2Δ) demonstrated 43% loss of PVN GR compared with an 87% GR loss in exon 3-deleted mice (Sim1Cre-GRe3Δ). Sim1Cre-GRe3Δ mice display stunted growth at birth but develop obesity in adulthood and display impaired stress-induced glucose release. We observed elevated basal and stress-induced corticosterone levels in Sim1Cre-GRe3Δ mice, compared with control and Sim1Cre-GRe2Δ mice, and impaired dexamethasone suppression, indicating an inability to negatively regulate corticosterone secretion. Sim1Cre-GRe3Δ mice also showed increased CRH mRNA in the PVN, increased basal plasma ACTH levels, and reduced locomotor behavior. We observed no differences in Sim1Cre-GRe2Δ mice compared with control mice in any measure. Our behavioral data suggest that GR deletion in Sim1-expressing neurons has no effect on anxiety or despair-like behavior under basal conditions. We conclude that loss of PVN GR results in severe HPA axis hyperactivity and Cushing's syndrome-like phenotype but does not affect anxiety and despair-like behaviors.
糖皮质激素受体(GR)在应激反应过程中调节下丘脑 - 垂体 - 肾上腺(HPA)轴的活性。室旁核(PVN)是负反馈的主要部位,用于协调HPA轴活性程度与所暴露应激源的强度。为了确定内源性PVN GR的功能,我们使用Cre-loxP技术破坏下丘脑Sim1表达神经元中的不同GR外显子。与外显子3缺失小鼠(Sim1Cre-GRe3Δ)中87%的GR缺失相比,GR外显子2缺失小鼠(Sim1Cre-GRe2Δ)的PVN GR缺失了43%。Sim1Cre-GRe3Δ小鼠出生时生长发育迟缓,但成年后会肥胖,且应激诱导的葡萄糖释放受损。与对照和Sim1Cre-GRe2Δ小鼠相比,我们观察到Sim1Cre-GRe3Δ小鼠的基础和应激诱导的皮质酮水平升高,地塞米松抑制受损,表明无法对皮质酮分泌进行负调节。Sim1Cre-GRe3Δ小鼠还表现出PVN中CRH mRNA增加、基础血浆促肾上腺皮质激素(ACTH)水平升高以及运动行为减少。与对照小鼠相比,我们在任何测量中均未观察到Sim1Cre-GRe2Δ小鼠有差异。我们的行为数据表明,在基础条件下,Sim1表达神经元中GR的缺失对焦虑或绝望样行为没有影响。我们得出结论,PVN GR的缺失导致严重的HPA轴功能亢进和库欣综合征样表型,但不影响焦虑和绝望样行为。