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Ⅲ类乙醇脱氢酶中具有异常二聚体模式的同工酶多样性。天然蛋白质中“无功能”位点残基交换对活性和四级结构的影响。

Isozyme multiplicity with anomalous dimer patterns in a class III alcohol dehydrogenase. Effects on the activity and quaternary structure of residue exchanges at "nonfunctional" sites in a native protein.

作者信息

Danielsson O, Shafqat J, Estonius M, el-Ahmad M, Jörnvall H

机构信息

Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.

出版信息

Biochemistry. 1996 Nov 19;35(46):14561-8. doi: 10.1021/bi9618124.

Abstract

The isozymes of class III alcohol dehydrogenase/glutathione-dependent formaldehyde dehydrogenase from cod were characterized. They exhibited three unexpected properties of general interest. First, these dimeric isozymes, derived from two types of subunit (h and l, for high- and low-activity forms), were recovered from liver preparations in only the homodimeric ll and heterodimeric hl combinations. Dissociation and reassociation of the isolated hl form in vitro also resulted in lower yields of the hh than the ll homodimer, although class III subunits are usually freely associable over wide borders of divergence (human and Drosophila). The h and l primary structures show that both chain types are characteristic of class III enzymes, without large amino acid replacements at positions of known subunit interactions. Hence, the hh dimer partial restriction indicates nontraditional alterations at h-subunit interfaces. The structure provides a possible explanation, in the form of h-chain modifications that may influence the anchoring of a loop at positions of two potentially deamidative beta-aspartyl shifts at distant Asn-Gly structures. Second the ll and hl forms differ in enzymatic properties, having 5-fold different K(m) values for NAD+ at pH 8, different K(m) values for S-(hydroxymethyl)glutathione (10 versus 150 microM), and different specific activities (4.5 versus 41 units/mg), with ll resembling and hl deviating from human and other class III alcohol dehydrogenases. However, functional residues lining substrate and coenzyme pockets in the known conformations of homologous forms are largely identical in the two isozymes [only minor conservative exchanges of Val/Leu116, Val/Leu203, Ile/Val224, and Ile/Val269 (numbering system of the human class I enzyme)], again indicating effects from distantly positioned h-chain replacements. Third, the two isozymes differ a surprising amount in amino acid sequence (18%, the same as the piscine/ human difference), reflecting a remarkably old isozyme duplication or, more probably, discordant accumulation of residue exchanges with greater speed of evolution for one of the subunits (h chain) than is typical for the slowly evolving class III alcohol dehydrogenase.

摘要

对鳕鱼中III类乙醇脱氢酶/谷胱甘肽依赖性甲醛脱氢酶的同工酶进行了表征。它们表现出三个普遍感兴趣的意外特性。首先,这些二聚体同工酶由两种亚基(h和l,分别代表高活性和低活性形式)组成,仅以同型二聚体ll和异型二聚体hl组合从肝脏制剂中回收。尽管III类亚基通常在很大的差异范围内(人类和果蝇)可自由结合,但体外分离的hl形式的解离和重新结合也导致hh同型二聚体的产量低于ll同型二聚体。h和l的一级结构表明,两种链类型均为III类酶的特征,在已知亚基相互作用的位置没有大的氨基酸替换。因此,hh二聚体的部分限制表明h亚基界面处存在非传统改变。该结构提供了一种可能的解释,即h链修饰可能影响环在远处Asn-Gly结构处两个潜在脱酰胺β-天冬氨酰移位位置的锚定。其次,ll和hl形式在酶学性质上有所不同,在pH 8时对NAD+的K(m)值相差5倍,对S-(羟甲基)谷胱甘肽的K(m)值不同(分别为10和150 microM),比活性也不同(分别为4.5和41单位/mg),ll类似于人类和其他III类乙醇脱氢酶,而hl则与之不同。然而,在同源形式的已知构象中,底物和辅酶口袋内衬的功能残基在两种同工酶中基本相同[仅Val/Leu116、Val/Leu203、Ile/Val224和Ile/Val269(人类I类酶的编号系统)有少量保守交换],再次表明远处h链替换的影响。第三, 这两种同工酶在氨基酸序列上有惊人的差异(18%,与鱼类/人类的差异相同),这反映了一个非常古老的同工酶重复事件,或者更有可能的是,一个亚基(h链)的残基交换积累速度比缓慢进化的III类乙醇脱氢酶更快,导致了不一致的积累。

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