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促性腺激素释放激素免疫反应性神经元细胞核中雌二醇浓度缺失。

Absence of oestradiol concentration in cell nuclei of LHRH-immunoreactive neurones.

作者信息

Shivers B D, Harlan R E, Morrell J I, Pfaff D W

出版信息

Nature. 1983;304(5924):345-7. doi: 10.1038/304345a0.

Abstract

Oestrogen, acting in both the brain and pituitary, has a critical role in regulating the reproductive cycle in most mammals. In the brain, oestrogen regulates the release of luteinizing hormone-releasing hormone (LHRH) partly through a mechanism that is blocked by inhibitors of DNA-dependent RNA synthesis or protein synthesis. The distributions of oestrogen-concentrating neurones and of LHRH neurones overlap. The present study was undertaken to determine whether genomic effects of oestrogen mediated by nuclear oestradiol concentration include a direct effect on LHRH-containing neurones. During extensive studies in which the immunocytochemical method for localizing LHRH neurones was optimized and made compatible with the autoradiographic method for detecting oestrogen-concentrating neurones, doubly-labelled cells were very rarely seen. This suggests that genomic regulatory effects of oestrogen which depend on nuclear retention are not exerted directly on most LHRH neurones, but rather must be mediated by another class of neurones.

摘要

雌激素在大脑和垂体中均发挥作用,对大多数哺乳动物生殖周期的调节起着关键作用。在大脑中,雌激素部分通过一种被DNA依赖性RNA合成抑制剂或蛋白质合成抑制剂阻断的机制来调节促黄体生成素释放激素(LHRH)的释放。雌激素浓缩神经元和LHRH神经元的分布存在重叠。本研究旨在确定由核雌二醇浓度介导的雌激素基因组效应是否包括对含LHRH神经元的直接作用。在广泛的研究中,对用于定位LHRH神经元的免疫细胞化学方法进行了优化,并使其与用于检测雌激素浓缩神经元的放射自显影方法兼容,但很少见到双标记细胞。这表明依赖于核保留的雌激素基因组调节作用并非直接作用于大多数LHRH神经元,而是必须由另一类神经元介导。

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