Wade J D, Lin F, Talbo G, Otvos L, Tan Y Y, Tregear G W
Howard Florey Institute of Experimental Physiology and Medicine, University of Melbourne, Parkville, Victoria, Australia.
Biomed Pept Proteins Nucleic Acids. 1996;2(3):89-92.
The peptide hormone relaxin was isolated in good yield from the ovaries of the pregnant rodent Rattus rattus using a simplified purification schedule. It was subjected to comprehensive chemical characterization to confirm both its purity and predicted composition. The peptide was also chemically synthesized by the solid phase procedure. The two chains comprising the hormone were each assembled by the Boc-polystyrene method and, following conventional purification, combined in solution to form the single intramolecular and two intermolecular disulfide bonds. Following purification, the synthetic rat relaxin was fully chemically characterized and shown to be indistinguishable from the native peptide including by secondary structure analysis using circular dichroism spectroscopy. The native and synthetic rat relaxins were shown to be equally biologically active in the in vitro rat uterine relaxation assay and had pEC50 values that were comparable to synthetic human H2 relaxin.
利用简化的纯化方案,从怀孕啮齿动物黑家鼠的卵巢中以高产率分离出肽激素松弛素。对其进行了全面的化学表征,以确认其纯度和预测组成。该肽还通过固相法进行化学合成。构成该激素的两条链分别通过Boc-聚苯乙烯法组装,经过常规纯化后,在溶液中合并形成分子内和分子间的两个二硫键。纯化后,对合成的大鼠松弛素进行了全面的化学表征,结果表明,通过圆二色光谱法进行二级结构分析,其与天然肽没有区别。在体外大鼠子宫松弛试验中,天然和合成的大鼠松弛素显示出同等的生物活性,其pEC50值与合成的人H2松弛素相当。