Gane P J, Dunwell J M, Warwicker J
Institute of Food Research, Reading Laboratory, United Kingdom.
J Mol Evol. 1998 Apr;46(4):488-93. doi: 10.1007/pl00006329.
It is known that germin, which is a marker of the onset of growth in germinating wheat, is an oxalate oxidase, and also that germins possess sequence similarity with legumin and vicilin seed storage proteins. These two pieces of information have been combined in order to generate a 3D model of germin based on the structure of vicilin and to examine the model with regard to a potential oxalate oxidase active site. A cluster of three histidine residues has been located within the conserved beta-barrel structure. While there is a relatively low level of overall sequence similarity between the model and the vicilin structures, the conservation of amino acids important in maintaining the scaffold of the beta-barrel lends confidence to the juxtaposition of the histidine residues. The cluster is similar structurally to those found in copper amine oxidase and other proteins, leading to the suggestion that it defines a metal-binding location within the oxalate oxidase active site. It is also proposed that the structural elements involved in intermolecular interactions in vicilins may play a role in oligomer formation in germin/oxalate oxidase.
已知发芽小麦生长开始的标志物胚球蛋白是一种草酸氧化酶,并且胚球蛋白与豆球蛋白和豌豆球蛋白种子贮藏蛋白具有序列相似性。为了基于豌豆球蛋白的结构生成胚球蛋白的三维模型,并检查该模型的潜在草酸氧化酶活性位点,这两条信息已被结合起来。在保守的β-桶状结构内定位到了一簇三个组氨酸残基。虽然该模型与豌豆球蛋白结构之间的总体序列相似性相对较低,但在维持β-桶状结构支架中重要的氨基酸的保守性为组氨酸残基的并列提供了可信度。该簇在结构上与铜胺氧化酶和其他蛋白质中的那些相似,这表明它定义了草酸氧化酶活性位点内的一个金属结合位置。还提出豌豆球蛋白中参与分子间相互作用的结构元件可能在胚球蛋白/草酸氧化酶的寡聚体形成中起作用。