Coudé F X, Grimber G, Parvy P, Rabier D, Bardet J
Biochem J. 1984 Nov 15;224(1):263-7. doi: 10.1042/bj2240263.
The metabolic effects of pent-4-enoate were studied in isolated rat hepatocytes; 1 mM-pent-4-enoate did not significantly inhibit gluconeogenesis from lactate, alanine and glycerol, but significantly decreased glucose synthesis from pyruvate. The addition of 1 mM-NH4Cl led to a drastic inhibition of glucose synthesis from all these substrates. In hepatocytes incubated with 10 mM-alanine and 1 mM-oleate, pent-4-enoate at 0.05-1 mM slightly inhibited glucose synthesis and ketogenesis. The addition of ammonia resulted in a dramatic potentiation of the metabolic effects of pent-4-enoate. Half-maximum effect of ammonia was observed at 0.2 mM concentration. Concomitant cellular concentrations of ATP and acetyl-CoA were also decreased by the addition of ammonia, as were lactate/pyruvate ratio and beta-hydroxybutyrate/acetoacetate ratio. These data suggest that ammonia seriously interferes with the cellular metabolism of pent-4-enoate and leads to a dramatic potentiation of its effects.
在分离的大鼠肝细胞中研究了4-戊烯酸的代谢作用;1 mM的4-戊烯酸不会显著抑制由乳酸、丙氨酸和甘油生成葡萄糖的过程,但会显著降低由丙酮酸生成葡萄糖的量。添加1 mM氯化铵会导致所有这些底物生成葡萄糖的过程受到强烈抑制。在用10 mM丙氨酸和1 mM油酸孵育的肝细胞中,0.05 - 1 mM的4-戊烯酸会轻微抑制葡萄糖生成和生酮作用。添加氨会导致4-戊烯酸的代谢作用显著增强。在0.2 mM浓度时观察到氨的半数最大效应。添加氨后,细胞内ATP和乙酰辅酶A的浓度也会降低,乳酸/丙酮酸比值和β-羟基丁酸/乙酰乙酸比值也会降低。这些数据表明,氨严重干扰了4-戊烯酸的细胞代谢,并导致其效应显著增强。