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丙戊酸对苯甲酸甘氨酸结合反应的影响。

Effect of valproic acid on glycine conjugation of benzoic acid.

作者信息

Gregus Z, Fekete T, Varga F, Klaassen C D

机构信息

Department of Pharmacology, University of Medical School of Pécs, Hungary.

出版信息

J Pharmacol Exp Ther. 1993 Dec;267(3):1068-75.

PMID:8263766
Abstract

Conjugation with glycine proceeds through ATP-dependent coupling of carboxylic acids with coenzyme A (CoA). Therefore, chemicals that form CoA esters may interfere with glycine conjugation. We tested the hypothesis that valproic acid (VPA), which is esterified with CoA in the first step of its mitochondrial beta-oxidation, may compromise glycine conjugation of aromatic carboxylic acids, by investigating the effect of acute VPA administration on glycine conjugation of benzoic acid in rats. VPA administered 1 hr before injection of benzoate only decreased the blood clearance of benzoate and the urinary excretion of benzoylglycine slightly in normal rats. However, in rats loaded with glycine, 2 and 3 mmol/kg of VPA reduced the blood clearance of benzoate by 34 and 59%, diminished the peak blood level of the glycine conjugate and depressed the maximal urinary excretion rate of benzoylglycine by 28 and 66%, respectively. To elucidate the mechanism of VPA-induced inhibition of benzoylglycine formation, the effects of VPA on hepatic levels of cosubstrates and the activities of enzymes involved in glycine conjugation were also determined. One hour after administration of VPA, hepatic ATP levels remained unchanged, whereas the concentration of CoA was reduced by 67 to 73% and that of glycine was increased by 58 to 67%. Activities of the enzymes of glycine conjugation were not influenced by VPA. However, 2-n-propyl-4-pentenoic acid, a metabolite of VPA, inhibited benzoyl-CoA synthetase. In summary, VPA minimally influenced the capacity of glycine conjugation of benzoic acid in normal rats, but decreased it markedly in glycine-loaded rats.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

甘氨酸结合反应通过羧酸与辅酶A(CoA)的ATP依赖性偶联进行。因此,形成CoA酯的化学物质可能会干扰甘氨酸结合反应。我们通过研究急性给予丙戊酸(VPA)对大鼠苯甲酸甘氨酸结合反应的影响,来验证这一假说,即VPA在其线粒体β-氧化的第一步与CoA酯化,可能会损害芳香族羧酸的甘氨酸结合反应。在注射苯甲酸盐前1小时给予VPA,仅使正常大鼠中苯甲酸盐的血液清除率和苯甲酰甘氨酸的尿排泄量略有降低。然而,在给予甘氨酸负荷的大鼠中,2和3 mmol/kg的VPA分别使苯甲酸盐的血液清除率降低了34%和59%,降低了甘氨酸结合物的血药峰值水平,并使苯甲酰甘氨酸的最大尿排泄率分别降低了28%和66%。为了阐明VPA诱导的苯甲酰甘氨酸形成抑制的机制,还测定了VPA对肝共底物水平和参与甘氨酸结合反应的酶活性的影响。给予VPA 1小时后,肝ATP水平保持不变,而CoA浓度降低了67%至73%,甘氨酸浓度增加了58%至67%。甘氨酸结合反应的酶活性不受VPA影响。然而,VPA的代谢产物2-正丙基-4-戊烯酸抑制了苯甲酰-CoA合成酶。总之,VPA对正常大鼠苯甲酸甘氨酸结合反应的能力影响最小,但在给予甘氨酸负荷的大鼠中则显著降低。(摘要截短至250字)

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