Inhibition of D (-)-3-hydroxybutyrate dehydrogenase by malonate analoges.
Inhibition of D (-)-3-hydroxybutyrate dehydrogenase by malonate analoges.
复制标题
丙二酸类似物抑制 D (-)-3-羟基丁酸脱氢酶。
DOI:
10.1016/0003-9861(75)90376-8
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发表时间:
1975
影响因子:
3.9
通讯作者:
G. Plaut
中科院分区:
文献类型:
--
作者:
A. W. Tan;C. Smith;T. Aogaichi;G. Plaut
(1)d(-)-3-Hydroxybutyrate dehydrogenase activity from guinea pig, rat, and bovine heart and from guinea pig liver is inhibited by malonate and tartronate, and more potently by the analogs methylmalonate, bromomalonate, chloromalonate, and mesoxalate. Little or no inhibitory effect was found for aminomalonate, ethylmalonate, dimethylmalonate, succinate, glutarate, oxaloacetate, malate, propionate, pyruvate,d- andl-lactate,n-butyrate, isobutyrate, and cyclopropanecarboxylate. (2) In initial velocity kinetics at pH 8.1 with a soluble enzyme preparation from bovine heart, the inhibition by the active malonate derivatives is competitive with respect to 3-hydroxybutyrate and uncompetitive with respect to acetoacetate, NAD+or NADH. Withd-3-hydroxybutyrate as the variable reactant (Kmapp= 0.26 mM) the inhibition constant of methylmalonate (Kis) was 0.09 mm. (3) The rate of utilization ofd-3-hydroxybutyrate (78 μm) by coupled rat heart mitochondria in the presence of ADP was inhibited 50% by 150 μmmethylmalonate. (4) With coupled guinea pig liver mitochondria oxidizingn-octanoate in the absence of added ADP, methylmalonate (1–3 mm) depressed 3-hydroxybutyrate formation substantially more than total ketone production. However, the intramitochondrial NADH (or NADPH) levels were unchanged by the addition of methylmalonate, indicating that the changes in ratios of accumulated 3-hydroxybutyrate and acetoacetate were caused by direct inhibition of 3-hydroxybutyrate dehydrogenase. Methylmalonate had the same effect on 3-hydroxybutyrate/acetoacetate ratios and ketone body formation with pyruvate or acetate as the source of acetyl groups. Similar results were obtained with malonate (10 mm) although the inhibition of total ketone formation from octanoate was more severe.