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雄性蝾螈垂体促性腺激素细胞中促黄体生成素β亚基(LHβ)和促卵泡生成素β亚基(FSHβ)的季节性表达

Seasonal expression of LHbeta and FSHbeta in the male newt pituitary gonadotrophs.

作者信息

Kano Yoshihiko, Nakano Tomoaki, Kumakura Masahiko, Wasa Takashi, Suzuki Masakazu, Yamauchi Kiyoshi, Tanaka Shigeyasu

机构信息

Department of Biology, Faculty of Science, Shizuoka University, Shizuoka 422-8529, Japan.

出版信息

Gen Comp Endocrinol. 2005 May 1;141(3):248-58. doi: 10.1016/j.ygcen.2005.01.003.

Abstract

Seasonal changes in LHbeta and FSHbeta mRNA levels were examined in the pituitary gland of the adult male newt, Cynops pyrrhogaster, using in situ hybridization histochemistry and a quantitative real-time RT-PCR method. The annual fluctuation of LHbeta mRNA and FSHbeta mRNA levels in the pituitary gland displayed a close relationship with seasonal changes in testicular function. The values obtained by both methods showed similar fluctuation. The levels of LHbeta mRNA were always exceeded those of FSHbeta. The present immunoelectron microscopic observations support the data on the gene expression levels of the beta-subunits of LH and FSH. Gonadectomy in the summer increased the LHbeta and FSHbeta mRNA levels. Testosterone replacement inhibited the expression of LHbeta mRNA, but not of FSHbeta mRNA, suggesting that the expression of FSHbeta is regulated by some non-steroid factor, probably inhibin. In the case of gonadectomy during any other season, the LHbeta mRNA level increased, but not to the same extent as in summer, and androgen concentrations decreased to the minimum of the year. This finding provides new information about the regulation of annual changes in LHbeta and FSHbeta expression in the pituitary gonadotrophs.

摘要

利用原位杂交组织化学和定量实时逆转录聚合酶链反应方法,研究了成年雄性日本红腹蝾螈(Cynops pyrrhogaster)垂体中促黄体生成素β(LHβ)和促卵泡生成素β(FSHβ)mRNA水平的季节性变化。垂体中LHβ mRNA和FSHβ mRNA水平的年度波动与睾丸功能的季节性变化密切相关。两种方法获得的值显示出相似的波动。LHβ mRNA的水平总是超过FSHβ的水平。目前的免疫电子显微镜观察结果支持了LH和FSHβ亚基基因表达水平的数据。夏季去势会增加LHβ和FSHβ mRNA水平。睾酮替代抑制了LHβ mRNA的表达,但不抑制FSHβ mRNA的表达,这表明FSHβ的表达受某些非甾体因子(可能是抑制素)的调节。在其他任何季节进行去势时,LHβ mRNA水平都会升高,但程度不如夏季,雄激素浓度降至一年中的最低水平。这一发现为垂体促性腺细胞中LHβ和FSHβ表达的年度变化调节提供了新信息。

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