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黄体生成素受体缺陷型小鼠在睾酮治疗前后的转录谱分析为研究出生后睾丸发育和间质细胞分化的激素调控提供了线索。

Transcriptional profiling of luteinizing hormone receptor-deficient mice before and after testosterone treatment provides insight into the hormonal control of postnatal testicular development and Leydig cell differentiation.

机构信息

Department of Biosciences, University of Kent, Canterbury, United Kingdom.

出版信息

Biol Reprod. 2010 Jun;82(6):1139-50. doi: 10.1095/biolreprod.109.082099. Epub 2010 Feb 17.

Abstract

Luteinizing hormone (LH) is a key regulator of male fertility through its effects on testosterone secretion by Leydig cells. Transcriptional control of this is, however, currently poorly understood. Mice in which the LH receptor is knocked out (LuRKO) show reduced testicular size, reduced testosterone, elevated serum LH, and a spermatogenic arrest that can be rescued by the administration of testosterone. Using genome-wide transcription profiling of LuRKO and control testes during postnatal development and following testosterone treatment, we show that the transcriptional effects of LH insensitivity are biphasic, with an early testosterone-independent phase and a subsequent testosterone-dependent phase. Testosterone rescue re-enables the second, testosterone-dependent phase of the normal prepubertal transcription program and permits the continuation of spermatogenesis. Examination of the earliest responses to testosterone highlights six genes that respond rapidly in a dose-dependent fashion to the androgen and that are therefore candidate regulatory genes associated with the testosterone-driven progression of spermatogenesis. In addition, our transcriptional data suggest a model for the replacement of fetal-type Leydig cells by adult-type cells during testicular development in which a testosterone feedback switch is necessary for adult Leydig cell production. LH signaling affects the timing of the switch but is not a strict requirement for Leydig cell differentiation.

摘要

黄体生成素(LH)通过对睾丸间质细胞分泌睾酮的作用,是男性生育力的关键调节因子。然而,目前对其转录调控的认识还很有限。LH 受体敲除(LuRKO)的小鼠睾丸体积减小、睾酮水平降低、血清 LH 升高,且精子发生停滞,而给予睾酮可挽救这一现象。我们通过对 LuRKO 和对照组小鼠在出生后发育过程中以及给予睾酮治疗后的睾丸进行全基因组转录谱分析,发现 LH 不敏感的转录效应呈双相性,早期为睾酮非依赖性阶段,随后为睾酮依赖性阶段。睾酮挽救可重新激活正常青春期前转录程序的第二个、依赖于睾酮的阶段,并允许精子发生继续进行。对睾酮快速应答的最早反应的检查突出了六个基因,这些基因以剂量依赖性方式快速响应雄激素,因此是与精子发生过程中由睾酮驱动相关的候选调节基因。此外,我们的转录数据为睾丸发育过程中胎儿型睾丸间质细胞被成年型细胞取代提供了一个模型,其中睾酮反馈开关对于产生成年型睾丸间质细胞是必需的。LH 信号影响开关的时机,但不是睾丸间质细胞分化的严格要求。

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