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尿素循环氨基酸缺乏的尿液代谢物特征。

Urinary metabolites characteristic of urea-cycle amino acid deficiency.

作者信息

Milner J A, Visek W J

出版信息

Metabolism. 1975 May;24(5):643-51. doi: 10.1016/0026-0495(75)90144-4.

Abstract

Experiments with 45-75-g male rats gave conclusive evidence that the simultaneous absence from the diet of arginine, ornithine, or citrulline caused an immediate and persistent elevation of orotic and citric acids in the urine. The experiments also demonstrated that a deficiency of no other individual amino acid increased urinary citrate and orotate. Elevated urinary excretion of orotic and citric acid occurred independently of the form of nonessential nitrogen. Replacement of arginine isonitrogenously with ornithine or citrulline prevented the rise in urinary orotic acid, but had different effects on growth, urinary citrate, and urinary urea. These differences were probably due to differential uptake of arginine, ornithine, and citrulline by tissues; In the reported experiments employing L-amino acids as sources of dietary nitrogen, a deficiency of any amino acid indispensable for growth and nitrogen balance or a deficiency of arginine, ornithine, or citrulline retarded growth, increased urinary urea, and decreased urinary ammonia. It is concluded that the severe loss of orotic acid during urea-cycle amino acid deficiency arises from a decreased capacity of the urea cycle to detoxify ammonia, thereby causing increased shunting of intramitochondrial carbamyl phosphate into pyrimidine synthesis. The similarities in metabolism during arginine deficiency and ammonia intoxication are discussed. The evidence shows that urinary orotic acid may be a valuable measure of arginine nutrition in mammals.

摘要

对体重45 - 75克的雄性大鼠进行的实验提供了确凿证据,即饮食中同时缺乏精氨酸、鸟氨酸或瓜氨酸会导致尿液中乳清酸和柠檬酸立即且持续升高。实验还表明,缺乏其他任何一种单个氨基酸都不会增加尿柠檬酸和乳清酸盐。乳清酸和柠檬酸的尿排泄量升高与非必需氮的形式无关。用鸟氨酸或瓜氨酸等氮替代精氨酸可防止尿乳清酸升高,但对生长、尿柠檬酸和尿尿素有不同影响。这些差异可能是由于组织对精氨酸、鸟氨酸和瓜氨酸的摄取不同;在报道的以L - 氨基酸作为膳食氮源的实验中,任何对生长和氮平衡必不可少的氨基酸缺乏,或精氨酸、鸟氨酸或瓜氨酸缺乏都会阻碍生长、增加尿尿素并降低尿氨。结论是,尿素循环氨基酸缺乏时乳清酸的严重损失源于尿素循环解毒氨的能力下降,从而导致线粒体内氨甲酰磷酸更多地分流到嘧啶合成中。讨论了精氨酸缺乏和氨中毒期间代谢的相似性。证据表明,尿乳清酸可能是衡量哺乳动物精氨酸营养状况的一个有价值的指标。

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