Department of Biomolecular Science, Weizmann Institute of Science, Rehovot, Israel.
Department of Biomolecular Science, Weizmann Institute of Science, Rehovot, Israel.
J Chromatogr B Analyt Technol Biomed Life Sci. 2018 Sep 1;1093-1094:113-118. doi: 10.1016/j.jchromb.2018.06.046. Epub 2018 Jul 11.
Since the importance of the high affinity between avidin and biotin, K = 3 × 10 M, gained universal recognition, numerous chemical, biological and medical avidin-biotin based applications have been developed. However, in some cases the high affinity may be a disadvantage, as this interaction is irreversible under physiological conditions. The dye, 4'-hydroxyazobenzene-2-carboxylic acid (HABA), binds avidin, at the biotin binding site, as determined by X-ray, at a much lower affinity constant, K = 6 × 10 M. We prepared a HABA affinity column (amber colored). Avidin bound to the column at a pH between 4 and 8.5, causing a change of color to red, and it could be eluted at mild conditions with buffers containing biotin, HABA, 1.5 M potassium chloride or a pH lower than 4.0 or higher than 8.5. Avidin eluted with HABA, created a red avidin-HABA complex, which was visualized. HABA free avidin was obtained by dialysis, which was followed by the loss of red coloration. The novel and easy to use HABA-affinity column was employed in our lab to prepare pure, fully glycosylated avidin from egg white. Most importantly, it may serve as an ideal tool for educational purposes, illuminating concepts of molecular recognition, reversible molecular binding, structure-based molecular design and solid phase chemical synthesis, as it is a reliable and visible reagent.
自从亲和素和生物素之间的高亲和力(K=3×10^M)得到广泛认可以来,已经开发出了许多基于亲和素-生物素的化学、生物和医学应用。然而,在某些情况下,这种高亲和力可能是一个缺点,因为在生理条件下,这种相互作用是不可逆的。染料 4'-羟基偶氮苯-2-羧酸(HABA)与亲和素在生物素结合部位结合,这一点通过 X 射线确定,其亲和力常数 K=6×10^M 要低得多。我们制备了 HABA 亲和柱(琥珀色)。亲和素在 pH 值为 4 到 8.5 之间与柱子结合,导致颜色变为红色,并且可以在温和条件下用含有生物素、HABA、1.5 M 氯化钾或 pH 值低于 4.0 或高于 8.5 的缓冲液洗脱。用 HABA 洗脱的亲和素会形成红色的亲和素-HABA 复合物,这是可以观察到的。用透析法去除 HABA 后,得到的游离亲和素失去了红色。这种新颖且易于使用的 HABA 亲和柱在我们实验室中用于从蛋清中制备纯的、完全糖基化的亲和素。最重要的是,它可以作为教育目的的理想工具,阐明分子识别、可逆分子结合、基于结构的分子设计和固相化学合成的概念,因为它是一种可靠且可见的试剂。