Perez G O, Epstein M, Rietberg B, Loutzenhiser R
Am J Physiol. 1978 Oct;235(4):F376-80. doi: 10.1152/ajprenal.1978.235.4.F376.
In order to evaluate the renal contribution to the metabolism of arginine, we have evaluated its biosynthesis and catabolism in the isolated perfused rat kidney. The kidneys of eight male Sprague-Dawley rats were perfused with Krebs-Ringer-bicarbonate buffer containing albumin and amino acids. Twenty-five muCi of L-[guanidino-14C]arginine or 25 muCi L-[guanidino-14C]citrulline were added to the system and radiochromatograms of the perfusate were obtained at 0, 30, 60, and 90 min. Perfusate levels of urea, creatine, and guanidine derivatives were measured with high-pressure liquid chromatography. During perfusion there was net utilization of arginine and net production of creatine, guanidinoacetic acid (GAA) and guanidinosuccinic acid (GSA). The guanidino carbon of arginine was incorporated by the kidney into urea, creatine GSA, GAA, and guanidinobutyric acid. The production of 14C-labeled urea from L-[guanidino-14C]citrulline was substantially lower than that previously demonstrated in the liver, while that of arginine was approximately 20 times greater. These studies demonstrate the important contribution of the kidney to the synthesis and metabolism of arginine.
为了评估肾脏对精氨酸代谢的贡献,我们在离体灌注的大鼠肾脏中评估了其生物合成和分解代谢。用含有白蛋白和氨基酸的 Krebs-Ringer-碳酸氢盐缓冲液灌注八只雄性 Sprague-Dawley 大鼠的肾脏。向系统中加入 25 μCi 的 L-[胍基-14C]精氨酸或 25 μCi 的 L-[胍基-14C]瓜氨酸,并在 0、30、60 和 90 分钟时获取灌注液的放射色谱图。用高压液相色谱法测量灌注液中尿素、肌酸和胍衍生物的水平。在灌注过程中,精氨酸有净消耗,肌酸、胍基乙酸(GAA)和胍基琥珀酸(GSA)有净生成。精氨酸的胍基碳被肾脏掺入尿素、肌酸、GSA、GAA 和胍基丁酸中。L-[胍基-14C]瓜氨酸生成 14C 标记尿素的量显著低于先前在肝脏中所显示的量,而精氨酸的生成量则大约高 20 倍。这些研究证明了肾脏对精氨酸合成和代谢的重要贡献。