重组蛋白在羟基磷灰石基固定化金属亲和层析吸附剂上的吸附行为

Peng-Chih Lin , Sung-Chyr Lin , Wen-Hwei Hsu
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引用次数: 12

摘要

本研究报道了三种含有多达8个聚组氨酸亲和标签的同源低聚模型重组蛋白在羟基磷灰石基固定化金属亲和色谱(IMAC)吸附剂上的平衡吸附。实验数据与三参数Langmuir-Freundlich等温线模型拟合良好,表明这些模型蛋白的吸附存在正协同性。IMAC吸附剂对模型蛋白的最大容量和结合亲和力原则上分别取决于蛋白的亲和标签的大小和数量。八聚体外消旋酶的异常高的结合常数,可能是由于同时的多点附着,使得从吸附剂中洗脱外消旋酶变得困难。变性条件下的吸附等温线符合Langmuir模型。Scatchard分析结果进一步表明,在变性条件下,模型蛋白亚基的吸附是均匀的。由于三种蛋白质亚基的未折叠多肽链的分子大小和聚(His)标签数目相同,因此在变性条件下吸附剂对三种未折叠蛋白质亚基的结合能力和亲和力基本相同。变性条件下缔合常数的显著降低表明高浓度尿素会干扰蛋白质在羟基磷灰石基吸附剂上的结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adsorption behaviors of recombinant proteins on hydroxyapatite-based immobilized metal affinity chromatographic adsorbents

The equilibrium adsorption of three homo-oligomeric model recombinant proteins containing up to 8 poly(histidine) affinity tags on a hydroxyapatite-based immobilized metal affinity chromatography (IMAC) adsorbent is reported in this study. The experimental data are well fitted with the three-parameter Langmuir–Freundlich isotherm model, indicating the presence of positive cooperativity for the adsorption of these model proteins. The maximum capacity and the binding affinity of the IMAC adsorbent for the model proteins are in principle dependent on the size and the number of affinity tags of proteins, respectively. The exceptionally high association constant of the octameric racemase, probably due to simultaneous multipoint attachment, make it difficult to elute racemase from the adsorbent. The adsorption isotherms under denaturing conditions are well fitted with the Langmuir model. Results of Scatchard analysis further suggest the homogeneous adsorption of the model protein subunits under denaturing conditions. The binding capacities and affinities of the adsorbent under denaturing conditions for the three unfolded protein subunits become essentially identical because the molecular size and number of poly(His) tags of the unfolded polypeptide chains of the three protein subunits are the same. The significant reduction in association constants under denaturing conditions suggests that high concentration of urea could interfere with the binding of proteins on the hydroxyapatite-based adsorbent.

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