Oratz M, Rothschild M A, Schreiber S S, Burks A, Mongelli J, Matarese B
Hepatology. 1983 Jul-Aug;3(4):567-71. doi: 10.1002/hep.1840030415.
Albumin synthesis is stimulated by those amino acids which increase urea synthesis and membrane bound polysome aggregation. Ornithine, an amino acid not incorporated into protein and produced from arginine in the urea cycle, is an albumin-stimulating amino acid and is the precursor of the polyamines, and we have shown that the polyamine spermine promotes bound polysome aggregation. To test the concept that ureogenesis with its generation of ornithine might play a key role in albumin synthesis regulation via the polyamine pathway, isolated livers from fasted donors were perfused with ornithine, alpha-difluoromethyl ornithine (DFMO), and spermine. In control experiments, albumin synthesis was 13.4 +/- 0.8 mg per 100 gm liver per hr and polysome aggregation was 47%. These were increased in the presence of ornithine (26.0 +/- 2.6 mg and 59%); if the livers were preperfused with DFMO before the addition of ornithine, then the expected increase in albumin synthesis and polysome reaggregation did not occur (16.3 +/- 1.4 mg and 47%). However, if spermine was present with DFMO during the preperfusion, then the addition of ornithine had the expected effect (albumin synthesis = 26.1 +/- 1.2 mg and polysome aggregation = 62%). This suggests that if the ornithine to putrescine pathway is blocked, ornithine does not stimulate albumin synthesis and offers support to the concepts that (a) ornithine stimulation of albumin production is via polyamine synthesis and (b) that the urea cycle plays a more important role in protein metabolism than simply the pathway for nitrogen disposal.
白蛋白合成受到那些能增加尿素合成和膜结合多核糖体聚集的氨基酸的刺激。鸟氨酸是一种不参与蛋白质合成且在尿素循环中由精氨酸产生的氨基酸,它是一种刺激白蛋白合成的氨基酸,也是多胺的前体,并且我们已经表明多胺精胺可促进结合多核糖体聚集。为了验证尿素生成及其产生的鸟氨酸可能通过多胺途径在白蛋白合成调节中起关键作用这一概念,用鸟氨酸、α-二氟甲基鸟氨酸(DFMO)和精胺灌注来自禁食供体的离体肝脏。在对照实验中,白蛋白合成速率为每100克肝脏每小时13.4±0.8毫克,多核糖体聚集率为47%。在有鸟氨酸存在的情况下,这些指标增加(分别为26.0±2.6毫克和59%);如果在添加鸟氨酸之前先用DFMO对肝脏进行预灌注,那么白蛋白合成和多核糖体再聚集就不会出现预期的增加(分别为16.3±1.4毫克和47%)。然而,如果在预灌注期间DFMO与精胺同时存在,那么添加鸟氨酸就会产生预期效果(白蛋白合成 = 26.1±1.2毫克,多核糖体聚集 = 62%)。这表明如果鸟氨酸向腐胺的途径被阻断,鸟氨酸就不会刺激白蛋白合成,并支持了以下概念:(a)鸟氨酸对白蛋白产生的刺激是通过多胺合成;(b)尿素循环在蛋白质代谢中所起的作用比仅仅作为氮排泄途径更为重要。