首页> 美国卫生研究院文献>The Journal of Neuroscience >Anxiolytic and Anti-Stress Effects of Brain Prolactin: Improved Efficacy of Antisense Targeting of the Prolactin Receptor by Molecular Modeling
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Anxiolytic and Anti-Stress Effects of Brain Prolactin: Improved Efficacy of Antisense Targeting of the Prolactin Receptor by Molecular Modeling

机译:催乳素的抗焦虑和抗压力作用:通过分子建模提高反义靶向催乳素受体的功效

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摘要

We provide the first evidence that prolactin is a neuromodulator of behavioral and neuroendocrine stress coping in the rat. In virgin female and male rats, intracerebral infusion of ovine prolactin (oPRL) into the lateral cerebral ventricle (intracerebroventricular) exerted an anxiolytic effect on the elevated plus-maze in a dose-dependent manner (0.1 and 1.0 μg/5 μl; p< 0.01). In contrast, downregulation of the expression of the long form of brain prolactin receptors by chronic intracerebroventricular infusion of an antisense oligodeoxynucleotide (ODN) (osmotic minipump, 0.5 μg · 0.5 μl−1 · hr−1; 5 d) increased anxiety-related behavior on the plus-maze compared with mixed bases-treated and vehicle-treated rats (p < 0.01), again demonstrating an anxiolytic effect of PRL acting at brain level. Furthermore, in jugular vein-catheterized female rats, the stress-induced increase of corticotropin secretion was decreased after chronic intracerebroventricular infusion of oPRL (osmotic minipump, 1.0 μg · 0.5 μl−1 · hr−1;p < 0.05) and, in contrast, was further elevated by antisense targeting of the brain prolactin receptors (p < 0.01). This provides evidence for a receptor-mediated attenuation of the responsiveness of the hypothalamo-pituitary-adrenal (HPA) axis by prolactin. The antisense ODN sequence was selected on the basis of secondary structure molecular modeling of the target mRNA to improve antisense ODN–mRNA hybridization. Receptor autoradiography confirmed the expected improvement in the efficacy of downregulation of prolactin receptor expression [empirically designed antisense, 30%; p > 0.05, not significant; adjustment of target position after mRNA modeling, 72%; p < 0.05). Taken together, prolactin acting at brain level has to be considered as a novel regulator of both emotionality and HPA axis reactivity.
机译:我们提供了第一个证据,催乳素是大鼠行为和神经内分泌应激应对的神经调节剂。在雌性和雌性原始大鼠中,将大脑泌乳素(oPRL)脑内注入脑外侧脑室(脑室内)呈剂量依赖性(0.1和1.0μg/ 5/5 l),对升高的迷宫产生抗焦虑作用。 0.01)。相比之下,慢性脑室内注入反义寡聚脱氧核苷酸(ODN)(渗透性微型泵,0.5μg·0.5μl −1 ·hr -)会长时表达脑催乳素受体的表达下调。 1 ; 5 d)与混合碱处理和媒介物处理的大鼠相比,正迷宫的焦虑相关行为增加(p <0.01),再次证明了PRL在脑水平上具有抗焦虑作用。此外,在经颈静脉插管的雌性大鼠中,长期脑室内输注oPRL(渗透性微型泵,1.0μg·0.5μl -1 ·hr - 1 ; p <0.05),相反,通过对脑催乳素受体的反义靶向进一步提高了该水平(p <0.01)。这提供了催乳素受体介导的下丘脑-垂体-肾上腺(HPA)轴反应性减弱的证据。根据靶mRNA的二级结构分子模型选择反义ODN序列,以改善反义ODN–mRNA杂交。受体放射自显影证实了催乳素受体表达下调功效的预期改善[经验设计的反义,30%; p> 0.05,不显着; mRNA建模后目标位置调整为72%; p <0.05)。两者合计,催乳素在大脑水平发挥作用,必须被视为情绪和HPA轴反应性的新型调节剂。

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