Lawrence M C, Izard T, Beuchat M, Blagrove R J, Colman P M
Biomolecular Research Institute, Parkville, Victoria, Australia.
J Mol Biol. 1994 May 20;238(5):748-76. doi: 10.1006/jmbi.1994.1333.
The refinement to 2.2 A resolution of the three-dimensional structure of the seed storage protein phaseolin from the French bean (Phaseolus vulgaris) via an alternative crystal form is described. The refined structure reveals details of the molecule hitherto unobserved and in particular we identify the structural role of conserved residues within the broader 7 S (vicilin) family of seed storage proteins. On this basis we are able to postulate a canonical model for the structure of the 7 S proteins. This model in turn provides a means for interpreting the structure of the 11 S (legumin) family of seed storage proteins, for which no X-ray diffraction data are available. The 11 S proteins are shown to bear a much closer relationship to the 7 S proteins than was previously recognized. The canonical model of the 7 S protein structure also provides a basis for proposing engineered mutations of these proteins with the goal of enhancing nutritional and functional properties.
本文描述了通过另一种晶型将法国豆(菜豆)种子贮藏蛋白菜豆球蛋白的三维结构精修至2.2 Å分辨率的过程。精修后的结构揭示了该分子迄今未被观察到的细节,特别是我们确定了种子贮藏蛋白更广泛的7S(豌豆球蛋白)家族中保守残基的结构作用。在此基础上,我们能够推测出7S蛋白结构的规范模型。反过来,这个模型为解释11S(豆球蛋白)家族种子贮藏蛋白的结构提供了一种方法,目前尚无该家族的X射线衍射数据。结果表明,11S蛋白与7S蛋白的关系比之前认为的更为密切。7S蛋白结构的规范模型也为提出这些蛋白的工程突变提供了基础,目的是增强其营养和功能特性。