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氨基酸代谢与生长的能量学

Amino acid metabolism and the energetics of growth.

作者信息

Reeds P J, Burrin D G, Davis T A, Stoll B

机构信息

USDA/ARS Children's Nutrition Research Center, Department of Pediatrics, Baylor College of Medicine, Houston, Tx. 77030-2600, USA.

出版信息

Arch Tierernahr. 1998;51(2-3):187-97. doi: 10.1080/17450399809381918.

Abstract

The nonessential amino acids are involved in a large number of functions that are not directly associated with protein synthesis. Recent studies using a combination of transorgan balance and stable isotopic tracers have demonstrated that a substantial portion of the extra-splanchnic flux of glutamate, glutamine, glycine and cysteine derives from tissue synthesis. A key amino acid in this respect is glutamic acid. Little glutamic acid of dietary origin escapes metabolism in the small intestinal mucosa. Furthermore, because glutamic acid is the only amino acid that can be synthesized by mammals by reductive amination of a ketoacid, it is the ultimate nitrogen donor for the synthesis of other nonessential amino acids. Because the synthesis of glutamic acid and its product glutamine involve the expenditure of adenosine triphosphate (ATP), it seems possible that nonessential amino acid synthesis might have a significant bearing on the energetics of protein synthesis and, hence, of protein deposition. This paper discusses the topic of the energy cost of protein deposition, considers the metabolic physiology of amino acid oxidation and nonessential amino acid synthesis, and attempts to combine the information to speculate on the overall impact of amino acid metabolism on the energy exchanges of animals.

摘要

非必需氨基酸参与大量与蛋白质合成无直接关联的功能。近期采用跨器官平衡与稳定同位素示踪剂相结合的研究表明,谷氨酸、谷氨酰胺、甘氨酸和半胱氨酸的内脏外通量中有很大一部分源自组织合成。在这方面的一种关键氨基酸是谷氨酸。膳食来源的谷氨酸很少能逃过小肠黏膜的代谢。此外,由于谷氨酸是哺乳动物唯一可通过酮酸还原胺化合成的氨基酸,它是合成其他非必需氨基酸的最终氮供体。由于谷氨酸及其产物谷氨酰胺的合成需要消耗三磷酸腺苷(ATP),非必需氨基酸的合成似乎可能对蛋白质合成的能量学有重大影响,进而对蛋白质沉积产生重大影响。本文讨论蛋白质沉积的能量成本这一主题,考量氨基酸氧化和非必需氨基酸合成的代谢生理学,并尝试整合这些信息来推测氨基酸代谢对动物能量交换的总体影响。

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