首页> 外文期刊>Regulatory peptides. >Corticotropin-releasing factor CRF1, but not CRF2, receptors mediate anxiogenic-like behavior.
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Corticotropin-releasing factor CRF1, but not CRF2, receptors mediate anxiogenic-like behavior.

机译:促肾上腺皮质激素释放因子CRF1而非CRF2受体介导类似焦虑的行为。

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摘要

The recent identification and differential localization in brain of three binding sites for corticotropin-releasing factor (CRF)-like peptides (CRF1 and CRF2 receptors as well as CRF-binding protein) suggest the existence of functionally distinct neurobiological systems which mediate CRF activation. For instance, evidence from receptor knockdown and pharmacological studies suggest involvement of the CRF1 receptor in anxiogenic-like behavior and the CRF-binding protein in learning and memory processes. The present studies examined the potential functional significance of the CRF2 receptor in relation to the CRF1 receptor using two animal models of anxiety and endocrine reactivity to a stressor. CRF1 and CRF2 receptor knockdown was achieved and confirmed autoradiographically within brain regions relevant to behavioral reactivity to stressors by chronic, central administration of antisense oligonucleotides. CRF1 but not CRF2, know down produced a significant anxiolytic-like effect in the Defensive Withdrawal relative to vehicle-treated and two missense oligonucleotide negative control groups. In contrast, neither antisense treatment altered endocrine or behavioral reactivity to a swim stressor. Thus, the present data support the reported role of CRF1 receptors in the mediation of anxiogenic-like behavior and suggest a functionally distinct for role for CRF2 receptors in brain.
机译:最近对促肾上腺皮质激素释放因子(CRF)样肽的三个结合位点(CRF1和CRF2受体以及CRF结合蛋白)的鉴定和在大脑中的差异定位表明介导CRF激活的功能不同的神经生物学系统的存在。例如,来自受体敲低和药理研究的证据表明,CRF1受体参与了类似焦虑的行为,而CRF结合蛋白参与了学习和记忆过程。本研究使用两种对应激源的焦虑和内分泌反应性动物模型,研究了CRF2受体相对于CRF1受体的潜在功能意义。 CRF1和CRF2受体敲低已实现,并通过反义寡核苷酸的长期,集中给药在与应激源的行为反应相关的大脑区域进行了放射自显影。相对于媒介物处理的和两个错义的寡核苷酸阴性对照组,CRF1而非CRF2知道在防御性撤药中产生了明显的抗焦虑作用。相反,两种反义疗法均不会改变内分泌或对游泳应激源的行为反应性。因此,本数据支持报道的CRF1受体在介导类似焦虑的行为中的作用,并暗示CRF2受体在脑中的作用在功能上是不同的。

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