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编码具有生物活性的人松弛素的基因组克隆的结构

Structure of a genomic clone encoding biologically active human relaxin.

作者信息

Hudson P, Haley J, John M, Cronk M, Crawford R, Haralambidis J, Tregear G, Shine J, Niall H

出版信息

Nature. 1983;301(5901):628-31. doi: 10.1038/301628a0.

Abstract

Relaxin is a peptide hormone synthesized in the corpora lutea of ovaries during pregnancy and is released into the blood stream prior to parturition. Its major biological effect is to remodel the mammalian reproductive tract to facilitate the birth process. Determination of the structure of human relaxin is thus a first step in opening up the possibility of clinical intervention in cases of difficult labour. However, the limited availability of human ovaries during pregnancy has prevented both direct amino acid sequence determination and isolation of cDNA clones obtained from relaxin producing tissue. Our approach has therefore been to screen directly for a human relaxin gene using an homologous porcine relaxin cDNA probe. We report here the successful identification of a genomic clone from which the structure of the entire coding region of a human preprorelaxin gene has been determined. Synthesis of biologically active relaxin has shown that the novel gene structure described herein codes for an authentic human relaxin. We believe this is the first successful synthesis of a biologically active hormone whose structure was predicted solely from the structure of a genomic clone.

摘要

松弛素是一种肽类激素,在怀孕期间由卵巢黄体合成,并在分娩前释放到血流中。其主要生物学作用是重塑哺乳动物生殖道,以促进分娩过程。因此,确定人松弛素的结构是在难产病例中开展临床干预的第一步。然而,孕期人卵巢的可获得性有限,这既阻碍了直接测定氨基酸序列,也妨碍了从产生松弛素的组织中分离cDNA克隆。因此,我们的方法是使用同源猪松弛素cDNA探针直接筛选人松弛素基因。我们在此报告成功鉴定出一个基因组克隆,已确定了人前松弛素原基因整个编码区的结构。具有生物活性的松弛素的合成表明,本文所述的新基因结构编码一种真正的人松弛素。我们相信这是首次成功合成一种生物活性激素,其结构仅根据基因组克隆的结构预测得出。

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