Milton S C, Brandt W F, Schnölzer M, Milton R C
Department of Chemical Pathology, University of Cape Town Medical School, Observatory, South Africa.
Biochemistry. 1992 Sep 22;31(37):8799-809. doi: 10.1021/bi00152a016.
The human gonadotropin-releasing hormone precursor protein, pHGnRH (Met-23-Ile69) (preproGnRH), and three of its fragment peptides, pHGnRH (Asp14-Ile69) (gonadotropin-releasing hormone associated peptide--GAP), pHGnRH (Phe38-Ile69), and pHGnRH (Ser47-Ile69), were assembled in a stepwise solid-phase cosynthesis employing Boc/Bzl tactics and an optimized acylation schedule which included recoupling steps with hexafluoro-2-propanol to help overcome the aggregation of the pendant peptide chains of the peptidoresin during difficult couplings. Reversed-phase high-performance liquid chromatography (HPLC) purification yielded products which were characterized by analytical reversed-phase HPLC, ion-exchange chromatography, capillary zone electrophoresis, SDS-polyacrylamide gel electrophoresis, and ion-spray mass spectrometry to reveal a high degree of homogeneity. Biological characterization demonstrated that only GAP stimulated luteinizing hormone and follicle-stimulating hormone release from primary cultures of rat anterior pituitary cells, while GAP, pHGnRH (Phe38-Ile69), and preproGnRH all inhibited prolactin release, with the latter being the most potent at concentrations comparable to bromocryptine. However, only GAP and pHGnRH (Phe38-Ile69) were able to displace a labeled gonadotropin-releasing hormone agonist from binding to rat pituitary membrane preparations. This first demonstration of significant biological activity with a precursor protein also suggests that the gonadotropin-releasing and prolactin release-inhibiting functions of GAP are not mediated through the same pituitary receptors.
人促性腺激素释放激素前体蛋白,pHGnRH(Met-23-Ile69)(前促性腺激素释放激素),及其三种片段肽,pHGnRH(Asp14-Ile69)(促性腺激素释放激素相关肽——GAP)、pHGnRH(Phe38-Ile69)和pHGnRH(Ser47-Ile69),采用Boc/Bzl策略和优化的酰化方案进行逐步固相共合成,该方案包括用六氟-2-丙醇进行再偶联步骤,以帮助克服在困难偶联过程中肽树脂侧链肽链的聚集。反相高效液相色谱(HPLC)纯化得到的产物通过分析型反相HPLC、离子交换色谱、毛细管区带电泳、SDS-聚丙烯酰胺凝胶电泳和离子喷雾质谱进行表征,以显示高度的均一性。生物学特性表明,只有GAP刺激大鼠垂体前叶细胞原代培养物中促黄体生成素和促卵泡激素的释放,而GAP、pHGnRH(Phe38-Ile69)和前促性腺激素释放激素均抑制催乳素释放,在与溴隐亭相当的浓度下,后者作用最强。然而,只有GAP和pHGnRH(Phe38-Ile69)能够使标记的促性腺激素释放激素激动剂从与大鼠垂体膜制剂的结合中置换出来。首次证明前体蛋白具有显著的生物学活性也表明,GAP的促性腺激素释放和催乳素释放抑制功能不是通过相同的垂体受体介导的。