Kaiser R, Holmquist B, Hempel J, Vallee B L, Jörnvall H
Department of Chemistry I, Karolinska Institutet, Stockholm, Sweden.
Biochemistry. 1988 Feb 23;27(4):1132-40. doi: 10.1021/bi00404a009.
The primary structure of class III alcohol dehydrogenase (dimeric with chi subunits) from human liver has been determined by peptide analyses. The protein chain is a clearly distinct type of subunit distantly related to those of both human class I and class II alcohol dehydrogenases (with alpha, beta, gamma, and pi subunits, respectively). Disregarding a few gaps, residue differences in the chi protein chain with respect to beta 1 and pi occur at 139 and 140 positions, respectively. Compared to class I, the 373-residue chi structure has an extra residue, Cys after position 60, and two missing ones, the first two residues relative to class I, although the N-terminus is acetylated like that for those enzymes. The chi subunit contains two more tryptophan residues than the class I subunits, accounting for the increased absorbance at 280 nm. There are also four additional acidic and two fewer basic side chains than in the class I beta structure, compatible with the markedly different electrophoretic mobility of the class III enzyme. Residue differences between class III and the other classes occur with nearly equal frequency in the coenzyme-binding and catalytic domains. The similarity in the number of exchanges relative to that of the enzymes of the other two classes supports conclusions that the three classes of alcohol dehydrogenase reflect stages in the development of separate enzymes with distinct functional roles. In spite of the many exchanges, the residues critical to basic functional properties are either completely unchanged--all zinc ligands and space-restricted Gly residues--or partly unchanged--residues at the coenzyme-binding pocket.(ABSTRACT TRUNCATED AT 250 WORDS)
通过肽分析确定了来自人肝脏的Ⅲ类醇脱氢酶(含χ亚基的二聚体)的一级结构。该蛋白质链是一种明显不同类型的亚基,与人类Ⅰ类和Ⅱ类醇脱氢酶(分别含α、β、γ和π亚基)的亚基有较远的亲缘关系。不考虑少数缺口,χ蛋白质链相对于β1和π在第139和140位分别出现残基差异。与Ⅰ类相比,含373个残基的χ结构在第60位之后有一个额外的残基Cys,还有两个缺失的残基,即相对于Ⅰ类的前两个残基,尽管其N端像那些酶一样被乙酰化。χ亚基比Ⅰ类亚基多两个色氨酸残基,这解释了在280nm处吸光度的增加。与Ⅰ类β结构相比,还有四个额外的酸性侧链和两个较少的碱性侧链,这与Ⅲ类酶明显不同的电泳迁移率相符。Ⅲ类与其他类之间的残基差异在辅酶结合域和催化域中出现的频率几乎相等。相对于其他两类酶的交换数量的相似性支持了这样的结论:三类醇脱氢酶反映了具有不同功能作用的独立酶发展过程中的不同阶段。尽管有许多交换,但对基本功能特性至关重要的残基要么完全不变——所有锌配体和空间受限的甘氨酸残基——要么部分不变——辅酶结合口袋处的残基。(摘要截短至250字)