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Corticoliberin Receptor 2 Deficient Mice and Their Use

机译:皮质糖皮质激素受体2缺陷型小鼠及其用途

摘要

The present invention provides transgenic mice deficient in corticotropin releasing factor receptor 2. Corticotropin releasing factor is a critical integrator of the hypothalamic-pituitary-adrenal axis in response to stress. CRF and its related molecule urocortin bind CRF receptor 1 and CRFR2 with distinct affinities. CRFR2 mutant mice were hypersensitive to stress and displayed increased anxiety-like behavior. Mutant mice had normal basal feeding and weight gain, but exhibited decreased food intake following food deprivation. Intravenous UCN dramatically decreased the mean arterial pressure in the controls but had no effect in the mutants. A deficiency of CRFR2 results in a significant increase in urocortin mRNA in the rostral region of the Edinger Westphal and a significant increase in CRF mRNA in central nucleus of the amygdala. These results demonstrate that the CRFR2 mutant mice, opposed to CRFR1 mutant mice, have an increased sensitivity to stress and display anxiety-like behavior. These mice are useful for the study of anxiety, depression, and the physiology of the HPA axis.
机译:本发明提供了缺乏促肾上腺皮质激素释放因子受体2的转基因小鼠。促肾上腺皮质激素释放因子是下丘脑-垂体-肾上腺轴响应应激的关键整合子。 CRF及其相关分子尿皮质素以独特的亲和力结合CRF受体1和CRFR2。 CRFR2突变小鼠对压力过敏,并表现出增加的焦虑样行为。突变的小鼠具有正常的基础喂养和体重增加,但是在食物缺乏后表现出减少的食物摄入。静脉UCN显着降低了对照组的平均动脉压,但对突变体没有影响。 CRFR2的缺乏会导致Edinger Westphal延髓区的尿皮质素mRNA显着增加,杏仁核中央核中CRF mRNA显着增加。这些结果表明,与CRFR1突变小鼠相反,CRFR2突变小鼠对压力的敏感性增加,并表现出焦虑样行为。这些小鼠可用于研究焦虑,抑郁和HPA轴的生理情况。

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