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大鼠松弛素的化学合成以及合成激素在小鼠体内出乎意料的高效能。

The chemical synthesis of rat relaxin and the unexpectedly high potency of the synthetic hormone in the mouse.

作者信息

Büllesbach E E, Schwabe C

机构信息

Department of Biochemistry and Molecular Biology, Medical University of South Carolina, Charleston, USA.

出版信息

Eur J Biochem. 1996 Oct 15;241(2):533-7. doi: 10.1111/j.1432-1033.1996.00533.x.

Abstract

Rat relaxin, as isolated from ovaries, has been described in the literature as a low potency hormone in the mouse symphysis pubis assay. Searching for an explanation, a helix-breaking glycine residue in the B chain seemed to be the most auspicious perturbation. Rat relaxin was chemically synthesized and analyzed by reverse-phase high performance liquid chromatography, amino acid composition, mass spectrometry and circular dichroic spectroscopy. Analogs of rat relaxin were synthesized either with aspartic acid in place of the helix-breaking glycine residue in the receptor-binding region of the B chain or with Asp-Leu-Val instead of Gly-Tyr-Val at positions B14-B16. In receptor-binding assays [B14D, B15L, B16V]relaxin was a better ligand than rat relaxin, whereas the [B14D]relaxin was less potent. In the mouse symphysis pubis assay, both analogs were less potent than unmodified rat relaxin, but the [B14D, B15L, B16V]relaxin was better than [B14D]relaxin. In contrast to previous reports on native rat relaxin, the chemically synthesized rat relaxin proved to be as active as human and porcine relaxin with respect to the standard mouse assay system. Glycine, which is considered to be a perturbator in an alpha helix, is not only tolerated in the B14 position but is required for full biological potency.

摘要

从卵巢中分离出的大鼠松弛素,在文献中被描述为在小鼠耻骨联合试验中效力较低的一种激素。为寻找原因,B链中一个破坏螺旋的甘氨酸残基似乎是最有可能的干扰因素。对大鼠松弛素进行了化学合成,并通过反相高效液相色谱、氨基酸组成分析、质谱分析和圆二色光谱分析进行了检测。大鼠松弛素类似物的合成方法如下:用天冬氨酸取代B链受体结合区域中破坏螺旋的甘氨酸残基,或者在B14 - B16位用天冬氨酸-亮氨酸-缬氨酸取代甘氨酸-酪氨酸-缬氨酸。在受体结合试验中,[B14D, B15L, B16V]松弛素比大鼠松弛素是更好的配体,而[B14D]松弛素效力较低。在小鼠耻骨联合试验中,两种类似物的效力均低于未修饰的大鼠松弛素,但[B14D, B15L, B16V]松弛素比[B14D]松弛素要好。与之前关于天然大鼠松弛素的报道不同,化学合成的大鼠松弛素在标准小鼠试验系统中表现出与人和猪松弛素一样的活性。甘氨酸在α螺旋中被认为是一种干扰因素,但它不仅在B14位能被耐受,而且是充分发挥生物活性所必需的。

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