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牛蛙催乳素受体cDNA的分子克隆:变态过程中催乳素受体mRNA水平的变化。

Molecular cloning of bullfrog prolactin receptor cDNA: changes in prolactin receptor mRNA level during metamorphosis.

作者信息

Hasunuma Itaru, Yamamoto Kazutoshi, Kikuyama Sakae

机构信息

Department of Biology, School of Education, Waseda University, Nishiwaseda 1-6-1, Shinjuku-ku, Tokyo 169-8050, Japan.

出版信息

Gen Comp Endocrinol. 2004 Sep 15;138(3):200-10. doi: 10.1016/j.ygcen.2004.06.005.

Abstract

In amphibian larvae, prolactin (PRL) is known to possess growth-promoting and anti-metamorphic activities. For further understanding of the role of PRL in larvae, bullfrog PRL receptor (bfPRLR) cDNA was obtained from the tail fin of premetamorphic tadpoles by use of the reverse transcription-polymerase chain reaction (RT-PCR) coupled with 5' - and 3' -rapid amplification of cDNA ends (RACE). The predicted bfPRLR was composed of 617 amino acids, contained a single transmembrane domain, and showed 33-57% sequence homologies with known sequences of vertebrate PRLRs. When bfPRLR was transiently expressed, specific binding of 125I-labeled bullfrog PRL (bfPRL) was observed. By Northern blot analysis, a 3-kb transcript was detected in the tail fin. By RT-PCR bfPRLR mRNA expression was detected mainly in the brain, kidney, skin, and tail throughout prometamorphic and middle climactic periods. The results of an RNase protection assay revealed that the bfPRLR mRNA level in the tail fin increased around the onset of climax (stage XX) and was maintained at a relatively high value at least until mid-climax (stage XXII). It also revealed that bfPRLR mRNA level in the kidney of larvae gradually rose as metamorphosis progressed. The results support the view that PRL in larval period acts not only on the larval organs but also on the organs that are necessary for the adult life to maintain or develop their structures and functions.

摘要

在两栖类幼体中,已知催乳素(PRL)具有促进生长和抗变态活性。为了进一步了解PRL在幼体中的作用,通过逆转录-聚合酶链反应(RT-PCR)结合5'-和3'-cDNA末端快速扩增(RACE),从变态前蝌蚪的尾鳍中获得了牛蛙PRL受体(bfPRLR)cDNA。预测的bfPRLR由617个氨基酸组成,包含一个单一的跨膜结构域,与脊椎动物PRLR的已知序列具有33%-57%的序列同源性。当bfPRLR瞬时表达时,观察到125I标记的牛蛙PRL(bfPRL)的特异性结合。通过Northern印迹分析,在尾鳍中检测到一个3kb的转录本。通过RT-PCR检测到bfPRLR mRNA表达主要在整个变态前期和中期高潮期的脑、肾、皮肤和尾中。核糖核酸酶保护试验结果显示,尾鳍中bfPRLR mRNA水平在高潮期开始时(XX期)升高,并至少维持在相对较高的值直到中期高潮期(XXII期)。该结果还显示,随着变态的进行,幼体肾脏中bfPRLR mRNA水平逐渐升高。这些结果支持了这样一种观点,即幼体期的PRL不仅作用于幼体器官,而且作用于成年生活所必需的器官,以维持或发育其结构和功能。

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