Rutenber E, Robertus J D
Clayton Foundation Biochemical Institute, Department of Chemistry and Biochemistry, University of Texas, Austin 78712.
Proteins. 1991;10(3):260-9. doi: 10.1002/prot.340100310.
The heterodimeric plant toxin ricin has been refined to 2.5 A resolution. The B-chain lectin (RTB) is described in detail. The protein has two major domains, each of which has a galactose binding site. RTB has no regular secondary structure but displays several omega loops. Each RTB domain is made of three copies of a primitive 40 residue folding unit, which pack around a pseudo threefold axis. In each domain, galactose binds in a shallow cleft formed by a three residue peptide kink on the bottom and an aromatic ring on the top. At the back of the cleft, an aspartate forms hydrogen bonds to the C3 and C4 hydroxyls of galactose, whereas a glutamine bonds to the C4 alcohol, helping to define specific epimer binding. In addition to analyzing the sugar binding mechanism, the assembly of subdomain units around the pseudo threefold axis of each domain is described. The subdomains contribute conserved Trp, Leu, and Ile residues to a compact central hydrophobic core. This tight threefold binding probably drives the peptide folding and stabilizes the protein structure.
异源二聚体植物毒素蓖麻毒素已被精修至2.5埃分辨率。详细描述了B链凝集素(RTB)。该蛋白质有两个主要结构域,每个结构域都有一个半乳糖结合位点。RTB没有规则的二级结构,但显示出几个ω环。每个RTB结构域由一个原始的40个残基折叠单元的三个拷贝组成,这些拷贝围绕一个假三重轴堆积。在每个结构域中,半乳糖结合在一个浅裂缝中,该裂缝由底部的一个三残基肽扭结和顶部的一个芳香环形成。在裂缝的后部,一个天冬氨酸与半乳糖的C3和C4羟基形成氢键,而一个谷氨酰胺与C4醇结合,有助于确定特定的差向异构体结合。除了分析糖结合机制外,还描述了每个结构域围绕假三重轴的亚结构域单元的组装。亚结构域为紧凑的中央疏水核心贡献了保守的色氨酸、亮氨酸和异亮氨酸残基。这种紧密的三重结合可能驱动肽折叠并稳定蛋白质结构。