Cozier G E, Anthony C
Department of Biochemistry, University of Southampton, Hants., U.K.
Biochem J. 1995 Dec 15;312 ( Pt 3)(Pt 3):679-85. doi: 10.1042/bj3120679.
The structure of methanol dehydrogenase (MDH) at 0.194 nm (1.94 A) has been used to provide a model structure for part of a membrane quinoprotein glucose dehydrogenase (GDH). The basic superbarrel structure is retained, along with the tryptophan-docking motifs. The active-site regions are similar, but there are important differences, the most important being that GDH lacks the novel disulphide ring structure formed from adjacent cysteines in MDH; in GDH the equivalent region is occupied by His-262. Because of the overall similarities in the active-site region, the mechanism of action of GDH is likely to be similar to that of MDH. The differences in co-ordination to the cation and bonding to the pyrrolo-quinoline quinone (PQQ) in the active site may explain the relative ease of dissociation of the prosthetic group from the holo-GDH. There are considerable differences in the external loops, particularly those involved in formation of the shallow funnel leading to the active site, the configuration of which influences substrate specificity. The proposed model is consistent in many respects with previous proposals for the active-site structure based on the effects of chemical modification on binding of PQQ and enzymic activity.
甲醇脱氢酶(MDH)在0.194纳米(1.94埃)分辨率下的结构已被用于构建膜醌蛋白葡萄糖脱氢酶(GDH)部分结构的模型。其基本的超桶状结构得以保留,色氨酸对接基序也同样如此。活性位点区域相似,但也存在重要差异,其中最重要的是GDH缺乏MDH中由相邻半胱氨酸形成的新型二硫环结构;在GDH中,等效区域被组氨酸-262占据。由于活性位点区域的整体相似性,GDH的作用机制可能与MDH相似。活性位点中与阳离子配位以及与吡咯喹啉醌(PQQ)结合的差异,可能解释了辅基从全酶GDH上相对容易解离的原因。外部环存在相当大的差异,特别是那些参与形成通向活性位点的浅漏斗结构的环,其构型会影响底物特异性。所提出的模型在许多方面与先前基于化学修饰对PQQ结合和酶活性影响而提出的活性位点结构模型一致。