OXIDOREDUCTION OF BUTANOL IN DEERMICE (PEROMYSCUS-MANICULATUS) LACKING HEPATIC CYTOSOLIC ALCOHOL-DEHYDROGENASE

被引:12
作者
CRONHOLM, T
NORSTENHOOG, C
EKSTROM, G
HANDLER, JA
THURMAN, RG
INGELMANSUNDBERG, M
机构
[1] KAROLINSKA INST,DEPT PHYSIOL CHEM,POB 60400,S-10401 STOCKHOLM 60,SWEDEN
[2] UNIV N CAROLINA,SCH MED,DEPT PHARMACOL,CHAPEL HILL,NC 27514
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1992年 / 204卷 / 01期
关键词
D O I
10.1111/j.1432-1033.1992.tb16643.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In view of conflicting information in the literature regarding enzyme systems responsible for alcohol oxidation in deermice previously reported to lack hepatic alcohol dehydrogenase (ADH) activity, the reversibility of butanol oxidation was studied in vivo and in liver-perfusion systems. Mixtures of [1,1-H-2(2)]ethanol and butanol were given intraperitoneally to deermice lacking (ADH-) or possessing (ADH+) ADH activity, followed by analysis of alcohols in blood by GC/MS. H-2 exchange between the two alcohols was seen in all experiments. In ADH- deermice, the H-2 excess of butanol increased steadily and reached 18 +/- 5% after 2.5 h. In ADH+ deermice, butanol was rapidly eliminated and the H-2 excess was about 7% after 0.5 h. In similar experiments with rats, the H-2 excess was about 40% for 2 h. Perfusions of livers from ADH- deermice with mixtures of unlabelled and 1-[H-2]butanol showed significant but slow intermolecular hydrogen transfer at C1, indicating oxidoreduction catalyzed by a dehydrogenase. Slow reduction of butanal was observed in mitochondria from ADH- deermice. ADH activity with a pH optimum of 10 and K(m) for ethanol of 6 mM was detected in the inner mitochondrial membranes from rats and deermice. However, low rates of oxidation observed in experiments carried out with perfused livers and in vitro suggest that this enzyme system does not contribute significantly to alcohol oxidation in vivo. Thus, perfused liver from ADH- deermice appears to be a useful system for studies of ADH-independent oxidation of alcohols. The H-2 exchange between the alcohols seen in vivo indicates that both ethanol and butanol are substrates for a common extrahepatic dehydrogenase in ADH- deermice.
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页码:353 / 357
页数:5
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