Nillni E A, Steinmetz R, Pescovitz O H
Department of Medicine, Brown University School of Medicine, Rhode Island Hospital, Providence 02903, USA.
Endocrinology. 1999 Dec;140(12):5817-27. doi: 10.1210/endo.140.12.7218.
The prepro-GH-releasing hormone (prepro-GHRH; 12.3 kDa) precursor, like other neuropeptide precursors, undergoes proteolytic cleavage to give rise to mature GHRH, which is the primary stimulatory regulator of pituitary GH secretion. In this study we present the first model of in vitro pro-GHRH processing. Using pulse-chase analysis, we demonstrate that at least five peptide forms in addition to GHRH are produced. The pro-GHRH (after removal of its signal peptide, 10.5 kDa) is first processed to an 8.8-kDa intermediate form that is cleaved to yield two products: the 5.2-kDa GHRH and GHRH-related peptide (GHRH-RP; 3.6 kDa). GHRH-RP is a recently described peptide derived from proteolytic processing of pro-GHRH that activates stem cell factor, a factor known to be essential for hemopoiesis, spermatogenesis, and melanocyte function. Further cleavage results in a 3.5-kDa GHRH and a 2.2-kDa product of GHRH-RP. Like GHRH, there is GHRH-RP immunostaining in hypothalamic neurons in the median eminence as detected by immunohistochemistry and immunoelectron microscopy. Based on deduced amino acid sequences of the pro-GHRH processing products, several peptides were synthesized and tested for their ability to stimulate the cAMP second messenger system. GHRH, GHRH-RP, and one of these peptides [prepro-GHRH-(75-92)-NH2] all significantly stimulated the PKA pathway. This work delineates a new model of pro-GHRH processing and demonstrates that novel peptides derived from this processing may have biological action.
前促生长激素释放激素(前pro-GHRH;12.3 kDa)前体与其他神经肽前体一样,经过蛋白水解切割产生成熟的GHRH,GHRH是垂体生长激素分泌的主要刺激调节因子。在本研究中,我们展示了体外pro-GHRH加工的首个模型。通过脉冲追踪分析,我们证明除GHRH外还产生了至少五种肽形式。pro-GHRH(去除其信号肽后,10.5 kDa)首先被加工成一种8.8 kDa的中间形式,该中间形式被切割产生两种产物:5.2 kDa的GHRH和GHRH相关肽(GHRH-RP;3.6 kDa)。GHRH-RP是一种最近描述的源自pro-GHRH蛋白水解加工的肽,它激活干细胞因子,该因子已知对造血、精子发生和黑素细胞功能至关重要。进一步切割产生3.5 kDa的GHRH和GHRH-RP的2.2 kDa产物。与GHRH一样,通过免疫组织化学和免疫电子显微镜检测发现,正中隆起的下丘脑神经元中有GHRH-RP免疫染色。基于pro-GHRH加工产物的推导氨基酸序列,合成了几种肽并测试了它们刺激cAMP第二信使系统的能力。GHRH、GHRH-RP以及其中一种肽[前pro-GHRH-(75-92)-NH2]均显著刺激PKA途径。这项工作描绘了pro-GHRH加工的新模型,并证明源自该加工的新型肽可能具有生物学作用。