Ko T P, Ng J D, McPherson A
Department of Biochemistry, University of California, Riverside 92521.
Plant Physiol. 1993 Mar;101(3):729-44. doi: 10.1104/pp.101.3.729.
The three-dimensional structure of the vicilin storage protein canavalin, from Canavalia ensiformis, has been determined in a hexagonal crystal by x-ray diffraction methods. The model has been refined at 2.6 A resolution to an R factor of 0.197 with acceptable geometry. Because of proteolysis, 58 of 419 amino acids of the canavalin polypeptide are not visible in the electron density map. The canavalin subunit is composed of two extremely similar structural domains that reflect the tandem duplication observed in the cDNA and in the amino acid sequence. Each domain consists of two elements, a compact, eight-stranded beta-barrel having the "Swiss roll" topology and an extended loop containing several short alpha-helices. The root mean square deviation between 84 pairs of corresponding C alpha atoms making up the strands of the two beta-barrels in a subunit is 0.78 A, and for 112 pairs of structurally equivalent C alpha atoms of the two domains the deviation is 1.37 A. The interface between domains arises from the apposition of broad hydrophobic surfaces formed by side chains originating from one side of the beta-barrels, supplemented by at least four salt bridges. The interfaces between subunits in the trimer are supplied by the extended loop elements. These interfaces are also composed primarily of hydrophobic residues supplemented by six salt bridges. The canavalin subunits have dimensions about 40 x 40 x 86 A, and the oligomer is a disk-shaped molecule about 88 A in diameter with a thickness of about 40 A. The distribution of domains lends a high degree of pseudo-32-point group symmetry to the molecule. There is a large channel of 18 A diameter, lined predominantly by hydrophilic and charged amino acids, running through the molecule along the 3-fold axis. The majority of residues conserved between domains and among vicilins occur at the interface between subunits but appear otherwise arbitrarily distributed within the subunit, although predominantly on its exterior.
已通过X射线衍射方法在六方晶体中确定了来自刀豆的伴刀豆球蛋白储存蛋白的三维结构。该模型已在2.6埃分辨率下进行精修,R因子为0.197,几何结构可接受。由于蛋白水解作用,伴刀豆球蛋白多肽的419个氨基酸中有58个在电子密度图中不可见。伴刀豆球蛋白亚基由两个极其相似的结构域组成,这反映了在cDNA和氨基酸序列中观察到的串联重复。每个结构域由两个元件组成,一个具有“瑞士卷”拓扑结构的紧密的八链β桶和一个包含几个短α螺旋的延伸环。构成一个亚基中两个β桶链的84对相应Cα原子之间的均方根偏差为0.78埃,两个结构域的112对结构等效Cα原子之间的偏差为1.37埃。结构域之间的界面源自β桶一侧的侧链形成的宽阔疏水表面的并置,并辅以至少四个盐桥。三聚体中亚基之间的界面由延伸环元件提供。这些界面也主要由疏水残基组成,并辅以六个盐桥。伴刀豆球蛋白亚基的尺寸约为40×40×86埃,寡聚体是一个直径约88埃、厚度约40埃的盘状分子。结构域的分布赋予分子高度的伪32点群对称性。有一个直径为18埃的大通道,主要由亲水和带电荷的氨基酸排列,沿着三重轴贯穿分子。结构域之间以及伴刀豆球蛋白之间保守的大多数残基出现在亚基之间的界面,但在亚基内其他地方似乎是随机分布的,尽管主要分布在其外部。