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在小鼠大脑的觉醒、应激、情感和认知回路中松弛素-3 和 RXFP3 的分布。

Distribution of relaxin-3 and RXFP3 within arousal, stress, affective, and cognitive circuits of mouse brain.

机构信息

Florey Neuroscience Institutes, The University of Melbourne, Victoria 3010, Australia.

出版信息

J Comp Neurol. 2010 Oct 1;518(19):4016-45. doi: 10.1002/cne.22442.

Abstract

Relaxin-3 (RLN3) and its native receptor, relaxin family peptide 3 receptor (RXFP3), constitute a newly identified neuropeptide system enriched in mammalian brain. The distribution of RLN3/RXFP3 networks in rat brain and recent experimental studies suggest a role for this system in modulation of arousal, stress, metabolism, and cognition. In order to facilitate exploration of the biology of RLN3/RXFP3 in complementary murine models, this study mapped the neuroanatomical distribution of the RLN3/RXFP3 system in mouse brain. Adult, male wildtype and RLN3 knock-out (KO)/LacZ knock-in (KI) mice were used to map the central distribution of RLN3 gene expression and RLN3-like immunoreactivity (-LI). The distribution of RXFP3 mRNA and protein was determined using [(35)S]-oligonucleotide probes and a radiolabeled RXFP3-selective agonist ([(125)I]-R3/I5), respectively. High densities of neurons expressing RLN3 mRNA, RLN3-associated beta-galactosidase activity and RLN3-LI were detected in the nucleus incertus (or nucleus O), while smaller populations of positive neurons were observed in the pontine raphé, the periaqueductal gray and a region adjacent to the lateral substantia nigra. RLN3-LI was observed in nerve fibers/terminals in nucleus incertus and broadly throughout the pons, midbrain, hypothalamus, thalamus, septum, hippocampus, and neocortex, but was absent in RLN3 KO/LacZ KI mice. This RLN3 neural network overlapped the regional distribution of RXFP3 mRNA and [(125)I]-R3/I5 binding sites in wildtype and RLN3 KO/LacZ KI mice. These findings provide further evidence for the conserved nature of RLN3/RXFP3 systems in mammalian brain and the ability of RLN3/RXFP3 signaling to modulate "behavioral state" and an array of circuits involved in arousal, stress responses, affective state, and cognition.

摘要

松弛素-3 (RLN3) 和其天然受体,松弛素家族肽 3 受体 (RXFP3),构成了一种新发现的富含哺乳动物大脑的神经肽系统。RLN3/RXFP3 网络在大鼠大脑中的分布和最近的实验研究表明,该系统在调节觉醒、应激、代谢和认知方面发挥作用。为了促进在互补的小鼠模型中探索 RLN3/RXFP3 的生物学特性,本研究绘制了 RLN3/RXFP3 系统在小鼠大脑中的神经解剖分布图谱。成年雄性野生型和 RLN3 敲除 (KO)/LacZ 敲入 (KI) 小鼠被用于绘制 RLN3 基因表达和 RLN3 样免疫反应性 (-LI) 的中枢分布图谱。使用 [(35)S]-寡核苷酸探针和放射性标记的 RXFP3 选择性激动剂 ([(125)I]-R3/I5) 分别确定了 RXFP3 mRNA 和蛋白的分布。在不确定核 (或核 O) 中检测到高浓度表达 RLN3 mRNA、RLN3 相关的β-半乳糖苷酶活性和 RLN3-LI 的神经元,而在桥脑中缝核、中脑导水管周围灰质和靠近外侧黑质的区域观察到较小数量的阳性神经元。RLN3-LI 存在于不确定核和广泛的桥脑、中脑、下丘脑、丘脑、隔核、海马体和新皮质的神经纤维/末梢中,但在 RLN3 KO/LacZ KI 小鼠中不存在。这个 RLN3 神经网络与野生型和 RLN3 KO/LacZ KI 小鼠中 RXFP3 mRNA 和 [(125)I]-R3/I5 结合位点的区域分布重叠。这些发现为 RLN3/RXFP3 系统在哺乳动物大脑中的保守性质以及 RLN3/RXFP3 信号在调节“行为状态”和一系列涉及觉醒、应激反应、情感状态和认知的回路方面的能力提供了进一步的证据。

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