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氟乙酸对酮体和脂肪酸抑制肾产氨作用的影响。

Effect of fluoroacetate on the inhibitory action of ketone bodies and fatty acids on renal ammoniagenesis.

作者信息

Lemieux G, Baverel G, Vinay P, Gougoux A

出版信息

Am J Physiol. 1979 Jul;237(1):F7-13. doi: 10.1152/ajprenal.1979.237.1.F7.

Abstract

Renal cortical slices from acidotic dogs (NH4CL) were incubated at pH 7.0 with L-glutamine (1 and 5 mM) or L-glutamate (5 mM) with or without DL-beta-hydroxyburyrate 1 mM, acetoacetate 0.5 mM, as well as oleate, palmitate, octanoate, and crotonate 0.5 mM and in the presence or absence of fluoroacetate 0.05 mM. Fluoroacetate alone increased glutamine or glutamate uptake and ammoniagenesis whereas gluconeogenesis rose only when glutamine 5 mM or glutamate were used. Alanine production also rose by 30% when glutamine but not glutamate was used as substrate in the presence of fluoroacetate. Efficient blocking of the Krebs cycle at the aconitase level by fluoroacetate was evidenced by the release of citrate in the incubation medium and by a slight but significant decrease in oxygen consumption (10-20%). The marked decrease in glutamine uptake, ammoniagenesis, and gluconeogenesis induced by ketone bodies and fatty acids was completely corrected by addition of fluoroacetate. The present studies demonstrate that ketone bodies and fatty acids inhibit renal ammoniagenesis and gluconeogenesis in vitro through their oxidation in the mitochondria. They also suggest that direct transamination of glutamine into alanine (glutaminase II pathway) may be significant when oxidation of pyruvate is inhibited by fluoroacetate.

摘要

将酸中毒犬(氯化铵诱导)的肾皮质切片在pH 7.0条件下与L-谷氨酰胺(1和5 mM)或L-谷氨酸(5 mM)一起孵育,同时添加或不添加1 mM DL-β-羟基丁酸、0.5 mM乙酰乙酸,以及0.5 mM油酸、棕榈酸、辛酸和巴豆酸,且存在或不存在0.05 mM氟乙酸。单独使用氟乙酸会增加谷氨酰胺或谷氨酸的摄取以及氨生成,而仅在使用5 mM谷氨酰胺或谷氨酸时糖异生才会增加。在氟乙酸存在下,当以谷氨酰胺而非谷氨酸作为底物时,丙氨酸生成也增加了30%。氟乙酸在乌头酸酶水平对三羧酸循环的有效阻断表现为孵育培养基中柠檬酸盐的释放以及耗氧量轻微但显著的降低(10 - 20%)。酮体和脂肪酸诱导的谷氨酰胺摄取、氨生成和糖异生的显著降低通过添加氟乙酸完全得到纠正。本研究表明,酮体和脂肪酸在体外通过在线粒体中的氧化抑制肾氨生成和糖异生。研究还表明,当丙酮酸氧化被氟乙酸抑制时,谷氨酰胺直接转氨生成丙氨酸(谷氨酰胺酶II途径)可能起重要作用。

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