Athappilly F K, Hendrickson W A
Department of Biochemistry & Molecular Biophysics, College of Physicians & Surgeons, Columbia University, New York, New York 10032, USA.
Protein Sci. 1997 Jun;6(6):1338-42. doi: 10.1002/pro.5560060623.
Streptavidin binds 2'-iminobiotin in a pH-dependent fashion--affinity decreases as the pH is lowered. This property makes the purification of compounds conjugated to streptavidin or immobiotin possible under mild conditions by affinity chromatography. In order to understand the molecular details of this pH-dependent binding, we analyzed the crystal structures of the complex of core streptavidin with 2'-iminobiotin at pH values 4.0 and 7.5. The two structures are very similar to each other even at their binding sites. Although the relative abundance of the protonated species of the ligand is increased more than 3,000-fold on going from pH 7.5 to pH 4.0, both structures contain only the nonprotonated from of the ligand. Streptavidin selects the nonprotonated form, which, at pH 4.0, is one part in 7.9 x 10(7).
链霉亲和素以pH依赖的方式结合2'-亚氨基生物素——随着pH值降低,亲和力下降。这一特性使得在温和条件下通过亲和色谱法纯化与链霉亲和素或免疫生物素缀合的化合物成为可能。为了了解这种pH依赖结合的分子细节,我们分析了核心链霉亲和素与2'-亚氨基生物素在pH值4.0和7.5时复合物的晶体结构。即使在它们的结合位点,这两种结构也非常相似。尽管从pH 7.5到pH 4.0时配体质子化形式的相对丰度增加了3000多倍,但两种结构都只包含配体的非质子化形式。链霉亲和素选择非质子化形式,在pH 4.0时,这种形式占7.9×10⁷分之一。