Weber P C, Ohlendorf D H, Wendoloski J J, Salemme F R
Central Research & Development Department, E. I. du Pont de Neumours and Company, Inc., Wilmington, DE 19880-0228.
Science. 1989 Jan 6;243(4887):85-8. doi: 10.1126/science.2911722.
The high affinity of the noncovalent interaction between biotin and streptavidin forms the basis for many diagnostic assays that require the formation of an irreversible and specific linkage between biological macromolecules. Comparison of the refined crystal structures of apo and a streptavidin:biotin complex shows that the high affinity results from several factors. These factors include the formation of multiple hydrogen bonds and van der Waals interactions between biotin and the protein, together with the ordering of surface polypeptide loops that bury the biotin in the protein interior. Structural alterations at the biotin binding site produce quaternary changes in the streptavidin tetramer. These changes apparently propagate through cooperative deformations in the twisted beta sheets that link tetramer subunits.
生物素与链霉亲和素之间非共价相互作用的高亲和力构成了许多诊断检测的基础,这些检测需要在生物大分子之间形成不可逆且特异性的连接。脱辅基蛋白和链霉亲和素-生物素复合物的精细晶体结构比较表明,高亲和力源于多个因素。这些因素包括生物素与蛋白质之间形成多个氢键和范德华相互作用,以及将生物素埋入蛋白质内部的表面多肽环的有序排列。生物素结合位点的结构改变会在链霉亲和素四聚体中产生四级变化。这些变化显然通过连接四聚体亚基的扭曲β折叠中的协同变形而传播。