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通过噬菌体展示揭示人血清白蛋白上两个赖氨酸在高亲和力结合 4Z,15Z-胆红素-IXα 中的生物学特性。

Biological characteristics of two lysines on human serum albumin in the high-affinity binding of 4Z,15Z-bilirubin-IXα revealed by phage display.

机构信息

Department of Biopharmaceutics, Graduate School of Pharmaceutical Sciences, Kumamoto University, Kumamoto, Japan.

出版信息

FEBS J. 2011 Nov;278(21):4100-11. doi: 10.1111/j.1742-4658.2011.08316.x. Epub 2011 Sep 23.

DOI:10.1111/j.1742-4658.2011.08316.x
PMID:21883930
Abstract

4Z,15Z-bilirubin-IXα (4Z,15Z-BR), an endogenous compound that is sparingly soluble in water, binds human serum albumin (HSA) with high affinity in a flexible manner. A phage library displaying recombinant HSA domain II was constructed, after three rounds of panning against immobilized 4Z,15Z-BR, and eight clones with high affinity for the pigment were found to contain conserved basic residues, such as lysine or arginine, at positions 195 and 199. The wild type and two mutants, K195A and K199A, of whole HSA as well as stand-alone domain II were expressed in Pichia pastoris for ligand-binding studies. The binding of 4Z,15Z-BR to the K195A and K199A mutants was decreased in both whole HSA and the domain II proteins. The P-helicity conformer (P-form) of 4Z,15Z-BR was found to preferentially bind to the wild types and the K195A mutants, whereas the M-form bound to the K199A mutants. Photoconversion experiments showed that the P-form of 4Z,15Z-BR was transformed into highly water-soluble isomers at a much faster rate than the M-form. In addition, the M-form of 4Z,15Z-BR showed higher affinity for domain I than for domain II. The present findings suggest that, whereas both Lys195 and Lys199 in subdomain IIA are important for the high-affinity binding of 4Z,15Z-BR, Lys199 plays a more prominent role in the elimination of 4Z,15Z-BR.

摘要

4Z,15Z-胆红素-IXα(4Z,15Z-BR)是一种在水中溶解度低的内源性化合物,以灵活的方式与人血清白蛋白(HSA)高亲和力结合。构建了展示重组 HSA 结构域 II 的噬菌体文库,经过三轮针对固定化 4Z,15Z-BR 的淘选,发现 8 个克隆对该色素具有高亲和力,这些克隆含有保守的碱性残基,如赖氨酸或精氨酸,位于位置 195 和 199。野生型和两种突变体,K195A 和 K199A,以及整个 HSA 和独立的结构域 II 的全蛋白都在毕赤酵母中表达,用于配体结合研究。4Z,15Z-BR 与 K195A 和 K199A 突变体的结合在整个 HSA 和结构域 II 蛋白中均降低。发现 4Z,15Z-BR 的 P-螺旋构象(P 构象)优先与野生型和 K195A 突变体结合,而 M 构象与 K199A 突变体结合。光转换实验表明,4Z,15Z-BR 的 P 构象比 M 构象更快地转化为高度水溶性的异构体。此外,M 构象的 4Z,15Z-BR 对结构域 I 的亲和力高于结构域 II。本研究结果表明,尽管亚结构域 IIA 中的赖氨酸 195 和赖氨酸 199 对于 4Z,15Z-BR 的高亲和力结合都很重要,但赖氨酸 199 在消除 4Z,15Z-BR 方面发挥了更突出的作用。

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