Marini Juan C, Didelija Inka Cajo
Section of Critical Care Medicine, Department of Pediatrics, Baylor College of Medicine, Houston, Texas, United States of America; United States Department of Agriculture/Agricultural Research Service Children's Nutrition Research Center, Department of Pediatrics, Baylor College of Medicine, Houston, Texas, United States of America.
United States Department of Agriculture/Agricultural Research Service Children's Nutrition Research Center, Department of Pediatrics, Baylor College of Medicine, Houston, Texas, United States of America.
PLoS One. 2015 Mar 16;10(3):e0119801. doi: 10.1371/journal.pone.0119801. eCollection 2015.
Due to the absolute need for arginine that certain cancer cells have, arginine depletion is a therapy in clinical trials to treat several types of cancers. Arginine is an amino acids utilized not only as a precursor for other important molecules, but also for protein synthesis. Because arginine depletion can potentially exacerbate the progressive loss of body weight, and especially lean body mass, in cancer patients we determined the effect of arginine depletion by pegylated arginine deiminase (ADI-PEG 20) on whole body protein synthesis and fractional protein synthesis rate in multiple tissues of mice. ADI-PEG 20 successfully depleted circulating arginine (<1 μmol/L), and increased citrulline concentration more than tenfold. Body weight and body composition, however, were not affected by ADI-PEG 20. Despite the depletion of arginine, whole body protein synthesis and breakdown were maintained in the ADI-PEG 20 treated mice. The fractional protein synthesis rate of muscle was also not affected by arginine depletion. Most tissues (liver, kidney, spleen, heart, lungs, stomach, small and large intestine, pancreas) were able to maintain their fractional protein synthesis rate; however, the fractional protein synthesis rate of brain, thymus and testicles was reduced due to the ADI-PEG 20 treatment. Furthermore, these results were confirmed by the incorporation of ureido [14C]citrulline, which indicate the local conversion into arginine, into protein. In conclusion, the intracellular recycling pathway of citrulline is able to provide enough arginine to maintain protein synthesis rate and prevent the loss of lean body mass and body weight.
由于某些癌细胞对精氨酸的绝对需求,精氨酸耗竭是一种正在进行临床试验的治疗多种癌症的方法。精氨酸是一种氨基酸,不仅用作其他重要分子的前体,还用于蛋白质合成。由于精氨酸耗竭可能会加剧癌症患者体重的逐渐减轻,尤其是瘦体重的减轻,我们研究了聚乙二醇化精氨酸脱亚氨酶(ADI-PEG 20)导致的精氨酸耗竭对小鼠多个组织中全身蛋白质合成和蛋白质合成率分数的影响。ADI-PEG 20成功耗尽了循环中的精氨酸(<1 μmol/L),并使瓜氨酸浓度增加了十多倍。然而,体重和身体组成并未受到ADI-PEG 20的影响。尽管精氨酸被耗尽,但在接受ADI-PEG 20治疗的小鼠中,全身蛋白质合成和分解仍得以维持。肌肉的蛋白质合成率分数也不受精氨酸耗竭的影响。大多数组织(肝脏、肾脏、脾脏、心脏、肺、胃、小肠和大肠、胰腺)能够维持其蛋白质合成率分数;然而,由于ADI-PEG 20治疗,大脑、胸腺和睾丸的蛋白质合成率分数降低。此外,通过将脲基[14C]瓜氨酸掺入蛋白质(这表明瓜氨酸在局部转化为精氨酸),证实了这些结果。总之,瓜氨酸的细胞内循环途径能够提供足够的精氨酸来维持蛋白质合成率,并防止瘦体重和体重的减轻。