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金丝雀雄激素受体信使核糖核酸的季节性和组织特异性调控。

Seasonal and tissue-specific regulation of canary androgen receptor messenger ribonucleic acid.

作者信息

Nastiuk K L, Clayton D F

机构信息

Laboratory of Animal Behavior, Rockefeller University, New York, New York 10021.

出版信息

Endocrinology. 1994 Feb;134(2):640-9. doi: 10.1210/endo.134.2.8299561.

Abstract

Natural seasonal fluctuations in androgen levels appear to cause changes in physiology and reproductive behavior, such as singing, in canaries. Little is known, however, about the cellular mechanisms underlying these changes. Because androgens act principally through nuclear receptors in other species, we have isolated and sequenced a cDNA likely to encode the canary androgen receptor and used this cDNA to examine the regulation of AR mRNA levels in the testis, kidney, and liver of the canary. The sequence corresponds to most of the coding portion of seven of the eight exons found in the homologous mammalian gene, including the domains that bind to DNA and androgen and affect transcription. Its mRNA is approximately 8 kilobases in length and is encoded by a single gene. In the testis, the transcript is expressed specifically in the Sertoli cells. The androgen receptor antagonist flutamide represses AR mRNA levels in kidney, but induces them in liver, indicating that androgen regulates its receptor, but does so in a tissue-specific manner, as is seen for the estrogen receptor in rodents. In addition, there are natural seasonal fluctuations in AR mRNA levels in testis and liver correlated with seasonal differences in the levels of circulating androgens. This is the first evidence of natural feedback regulation of AR mRNA levels.

摘要

雄激素水平的自然季节性波动似乎会引起诸如金丝雀鸣叫等生理和生殖行为的变化。然而,对于这些变化背后的细胞机制却知之甚少。由于雄激素在其他物种中主要通过核受体发挥作用,我们已分离并测序了一个可能编码金丝雀雄激素受体的cDNA,并利用该cDNA来研究金丝雀睾丸、肾脏和肝脏中雄激素受体(AR)mRNA水平的调控。该序列对应于同源哺乳动物基因中八个外显子中七个的大部分编码部分,包括与DNA、雄激素结合并影响转录的结构域。其mRNA长度约为8千碱基,由单一基因编码。在睾丸中,该转录本特异性地在支持细胞中表达。雄激素受体拮抗剂氟他胺可抑制肾脏中的AR mRNA水平,但在肝脏中却会诱导其表达,这表明雄激素对其受体具有调控作用,但这种调控具有组织特异性,就如同在啮齿动物中观察到的雌激素受体一样。此外,睾丸和肝脏中AR mRNA水平存在自然季节性波动,这与循环雄激素水平的季节性差异相关。这是AR mRNA水平自然反馈调控的首个证据。

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