MAMMALIAN CLASS-IV ALCOHOL-DEHYDROGENASE (STOMACH ALCOHOL-DEHYDROGENASE) - STRUCTURE, ORIGIN, AND CORRELATION WITH ENZYMOLOGY

被引:48
作者
PARES, X
CEDERLUND, E
MORENO, A
HJELMQVIST, L
FARRES, J
JORNVALL, H
机构
[1] KAROLINSKA INST, DEPT MED BIOCHEM & BIOPHYS, CHEM LAB 1, S-17177 STOCKHOLM, SWEDEN
[2] UNIV AUTONOMA BARCELONA, DEPT BIOCHEM & MOLEC BIOL, E-08193 BARCELONA, SPAIN
关键词
D O I
10.1073/pnas.91.5.1893
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The structure of a mammalian class IV alcohol dehydrogenase has been determined by peptide analysis of the protein isolated from rat stomach. The structure indicates that the enzyme constitutes a separate alcohol dehydrogenase class, in agreement with the distinct enzymatic properties; the class IV enzyme is somewhat closer to class I (the ''classical'' liver alcohol dehydrogenase; approximate to 68% residue identities) than to the other classes (II, III, and V; approximate to 60% residue identities), suggesting that class IV might have originated through duplication of an early vertebrate class I gene. The activity of the class IV protein toward ethanol is even higher than that of the classical liver enzyme. Both K-m and k(cat) values are high, the latter being the highest of any class characterized so far. Structurally, these properties are correlated with replacements at the active site, affecting both substrate and coenzyme binding. In particular, Ala-294 (instead of valine) results in increased space in the middle section of the substrate cleft, Gly-47 (instead of a basic residue) results in decreased charge interactions with the coenzyme pyrophosphate, and Tyr-363 (instead of a basic residue) may also affect coenzyme binding. In combination, these exchanges are compatible with a promotion of the off dissociation and an increased turnover rate. In contrast, residues at the inner part of the substrate cleft are bulky, accounting for low activity toward secondary alcohols and cyclohexanol. Exchanges at positions 259-261 involve minor shifts in glycine residues at a reverse turn in the coenzyme-binding fold. Clearly, class IV is distinct in structure, ethanol turnover, stomach expression, and possible emergence from class I.
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页码:1893 / 1897
页数:5
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