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通过位点特异性偶联提高固定在琼脂糖珠上的重组蛋白A的性能。

Improved Performance of Recombinant Protein A Immobilized on Agarose Beads by Site-Specific Conjugation.

作者信息

Zhang Xufeng, Duan Ya, Zeng Xi

机构信息

College of Chemistry and Chemical Engineering, Yunnan Normal University, Kunming 650092, PR China.

出版信息

ACS Omega. 2017 Apr 30;2(4):1731-1737. doi: 10.1021/acsomega.7b00362. Epub 2017 Apr 28.

Abstract

Protein A affinity adsorbent with high antibody-binding capacity plays a prominent part in the purification of biopharmaceuticals to decrease the manufacturing costs. We describe a site-specific covalent conjugation strategy for protein A to immobilize on agarose beads. Recombinant protein A, which has one cysteine introduced at the C terminus through genetic engineering technology, was immobilized site-specifically on maleimide-functionalized agarose beads by the thiol-maleimide reaction. As a comparison, the recombinant protein A was randomly immobilized on the aldehyde-functionalized agarose beads via free amino groups on the protein surface. The site-specific conjugation of recombinant protein A on the agarose beads was validated through the assay of free SH groups on the adsorbents using the Ellman's reagent. Adsorbents containing various amounts of protein A were used to adsorb antibody from human plasma. Analysis of immunoturbidimetry showed that the adsorbed fractions contained the 90.1% IgG, 4.2% IgA, and 5.7% IgM. The maximal antibodies-binding capacities with static adsorption and dynamic adsorption were approximately 64 and 50 mg, respectively, per swollen gram for site-specifically conjugated adsorbent and 31 and 26 mg for randomly conjugated adsorbent. Remarkably, the high antibody-binding capacity for site-specifically conjugated adsorbent outperformed the existing commercial protein A Sepharose (approximately 30 mg/g). The orientation of a protein is crucial for its activity after immobilization, and these results demonstrate that the site-specifically conjugated protein molecule is in a functionally active form to interact with the antibody with weak steric hindrance. The proposed approach may be an attractive strategy to synthesize affinity adsorbents with high-binding capacity.

摘要

具有高抗体结合能力的蛋白A亲和吸附剂在生物制药纯化中发挥着重要作用,可降低制造成本。我们描述了一种用于将蛋白A固定在琼脂糖珠上的位点特异性共价偶联策略。通过基因工程技术在C末端引入一个半胱氨酸的重组蛋白A,通过硫醇-马来酰亚胺反应位点特异性地固定在马来酰亚胺功能化的琼脂糖珠上。作为比较,重组蛋白A通过其表面的游离氨基随机固定在醛功能化的琼脂糖珠上。使用埃尔曼试剂对吸附剂上的游离SH基团进行测定,验证了重组蛋白A在琼脂糖珠上的位点特异性偶联。使用含有不同量蛋白A的吸附剂从人血浆中吸附抗体。免疫比浊法分析表明,吸附组分中含有90.1%的IgG、4.2%的IgA和5.7%的IgM。位点特异性偶联吸附剂的静态吸附和动态吸附的最大抗体结合能力分别约为每克溶胀吸附剂64毫克和50毫克,随机偶联吸附剂的分别为31毫克和26毫克。值得注意的是,位点特异性偶联吸附剂的高抗体结合能力优于现有的商业蛋白A琼脂糖凝胶(约30毫克/克)。蛋白质的固定方向对其固定后的活性至关重要,这些结果表明,位点特异性偶联的蛋白质分子处于功能活性形式,以较弱的空间位阻与抗体相互作用。所提出的方法可能是一种合成具有高结合能力的亲和吸附剂的有吸引力的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6e2/6644103/7db6437c60c3/ao-2017-003627_0001.jpg

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