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高甘氨酸饮食对大鼠甘氨酸分解代谢酶活性及甘氨酸分解代谢的影响。

The influence of high glycine diets on the activity of glycine-catabolizing enzymes and on glycine catabolism in rats.

作者信息

Petzke K J, Albrecht V, Przybilski H

出版信息

J Nutr. 1986 May;116(5):742-50. doi: 10.1093/jn/116.5.742.

Abstract

Male albino rats were adapted to isocaloric purified diets that differed mainly in their glycine and casein contents. Controls received a 30% casein diet. In experimental diets gelatin or gelatin hydrolysate was substituted for half of the 30% casein. An additional group was fed a glycine-supplemented diet, which corresponded in glycine level to the gelatin diet but in which the protein level was nearly the same as that of the casein control diet. Another group received a 15% casein diet. Rat liver glycine cleavage system, serine hydroxymethyltransferase and serine dehydratase activities were measured. 14CO2 production from the catabolism of 14C-labeled glycine was measured in vivo and in vitro (from isolated hepatocytes). Serine dehydratase and glycine cleavage system activities were higher in animals fed 30% casein diets than in those fed 15% casein diets. Serine hydroxymethyltransferase activity of the cytosolic and mitochondrial fractions was highest when a high glycine diet (glycine administered as pure, protein bound in gelatin or peptide bound in gelatin hydrolysate) was fed. 14CO2 formation from [1-14C]- and [2-14C]glycine both in vivo and in isolated hepatocytes was higher when a high glycine diet was fed than when a casein diet was fed. These results suggest that glycine catabolism is dependent on and adaptable to the glycine content of the diet. Serine hydroxymethyltransferase appears to play a major role in the regulation of glycine degradation via serine and pyruvate.

摘要

雄性白化大鼠被给予等热量的纯化饮食,这些饮食的主要区别在于甘氨酸和酪蛋白的含量。对照组接受含30%酪蛋白的饮食。在实验饮食中,用明胶或明胶水解物替代30%酪蛋白的一半。另一组喂食补充甘氨酸的饮食,其甘氨酸水平与明胶饮食相当,但蛋白质水平与酪蛋白对照饮食几乎相同。另一组接受含15%酪蛋白的饮食。测定大鼠肝脏甘氨酸裂解系统、丝氨酸羟甲基转移酶和丝氨酸脱水酶的活性。在体内和体外(从分离的肝细胞)测定14C标记甘氨酸分解代谢产生的14CO2。喂食含30%酪蛋白饮食的动物的丝氨酸脱水酶和甘氨酸裂解系统活性高于喂食含15%酪蛋白饮食的动物。当喂食高甘氨酸饮食(以纯甘氨酸、明胶中结合的蛋白质或明胶水解物中结合的肽形式给予甘氨酸)时,胞质和线粒体部分的丝氨酸羟甲基转移酶活性最高。喂食高甘氨酸饮食时,体内和分离的肝细胞中[1-14C]-和[2-14C]甘氨酸生成14CO2的量均高于喂食酪蛋白饮食时。这些结果表明,甘氨酸分解代谢依赖于饮食中的甘氨酸含量并可与之相适应。丝氨酸羟甲基转移酶似乎在通过丝氨酸和丙酮酸调节甘氨酸降解中起主要作用。

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