首页> 外文期刊>Journal of neuroendocrinology >Neonatal Kisspeptin is Steroid-Independently Required for Defeminisation and Peripubertal Kisspeptin-Induced Testosterone is Required for Masculinisation of the Brain: A Behavioural Study Using Kiss1 Knockout Rats
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Neonatal Kisspeptin is Steroid-Independently Required for Defeminisation and Peripubertal Kisspeptin-Induced Testosterone is Required for Masculinisation of the Brain: A Behavioural Study Using Kiss1 Knockout Rats

机译:新生儿Kisspeptin是非必需的类固醇激素,而青春期的Kisspeptin诱导的睾丸激素是大脑男性化所必需的:一项使用Kiss1基因敲除大鼠的行为研究

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摘要

Rodents show apparent sex differences in their sexual behaviours. The present study used Kiss1 knockout (KO) rats to evaluate the role of kisspeptin in the defeminisation/masculinisation of the brain mechanism that controls sexual behaviours. Castrated adult Kiss1 KO males treated with testosterone showed no male sexual behaviours but demonstrated the oestrogen-induced lordosis behaviours found in wild-type females. The sizes of some of the sexual dimorphic nuclei of Kiss1 KO male rats are similar to those of females. Plasma testosterone levels at embryonic day 18 and postnatal day 0 (PND0) in Kiss1 KO males were high, similar to wild-type males, indicating that perinatal testosterone is secreted in a kisspeptin-independent manner. Long-term exposure to testosterone from peripubertal to adult periods restored mounts and intromissions in KO males, suggesting that kisspeptin-dependent peripubertal testosterone secretion is required to masculinise the brain mechanism. This long-term testosterone treatment failed to abolish lordosis behaviours in KO males, whereas kisspeptin replacement at PND0 reduced lordosis quotients in Kiss1 KO males but not in KO females. These results suggest that kisspeptin itself is required to defeminise behaviour in the perinatal period, in cooperation with testosterone. Oestradiol benzoate treatment at PND0 suppressed lordosis quotients in Kiss1 KO rats, indicating that the mechanisms downstream of oestradiol work properly in the absence of kisspeptin. There was no significant difference in aromatase gene expression in the whole hypothalamus between Kiss1 KO and wild-type male rats at PND0. Taken together, the present study demonstrates that both perinatal kisspeptin and kisspeptin-independent testosterone are required for defeminisation of the brain, whereas kisspeptin-dependent testosterone during peripuberty to adulthood is needed for masculinisation of the brain in male rats.
机译:啮齿动物的性行为表现出明显的性别差异。本研究使用Kiss1基因敲除(KO)大鼠来评估Kisspeptin在控制性行为的大脑机制的去女性化/男性化中的作用。用睾丸激素治疗的去势成年Kiss1 KO男性没有表现出男性性行为,但证明了在野生型女性中发现的雌激素诱导的脊柱前凸行为。 Kiss1 KO雄性大鼠某些有性双态核的大小与雌性相似。 Kiss1 KO男性在胚胎第18天和出生后第0天(PND0)的血浆睾丸激素水平很高,与野生型男性相似,表明围产期睾丸激素以与Kisspeptin无关的方式分泌。从青春期到成年期长期接触睾丸激素可恢复KO男性的坐骑和内吸,这表明需要亲吻蛋白素依赖性的青春期围睾丸激素分泌来男性化大脑机制。这种长期的睾丸激素治疗不能消除KO男性的脊柱前凸行为,而在PND0上用吻肽素替代可以降低Kiss1 KO男性的脊柱前凸商,但不能降低KO雌性。这些结果表明,与睾丸激素合作,kisepteptin本身是降低围产期行为的必需品。在PND0处的雌二醇苯甲酸酯处理抑制了Kiss1 KO大鼠的脊柱前凸商,表明在没有kisseptin的情况下,雌二醇的下游机制正常起作用。在PND0,Kiss1 KO和野生型雄性大鼠在整个下丘脑中的芳香化酶基因表达没有显着差异。综上所述,本研究表明,雄性大鼠在青春期至成年期都需要围产期吻合肽和独立于吻合肽的睾丸激素,而在青春期到成年期则需要吻合肽依赖性睾丸素来男性化大脑。

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