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用于亲和沉淀治疗性抗体的稳定且可重复使用的钙响应性生物聚合物。

Stable and reusable calcium-responsive biopolymer for affinity precipitation of therapeutic antibodies.

机构信息

Center for Convergence Bioceramic Materials, Korea Institute of Ceramic Engineering and Technology, Cheongjusi, Chungcheongbuk-do, South Korea.

Department of Life Sciences, Korea University, Seoul, South Korea.

出版信息

Protein Sci. 2024 Aug;33(8):e5066. doi: 10.1002/pro.5066.

Abstract

Affinity precipitation is an attractive method for protein purification due to its many advantages, including the rapid capture of target proteins, simple processing, high specificity, and ease of scale-up. We previously reported a robust antibody purification method using Ca-dependent precipitation of ZZ-hCSQ2, a fusion protein of human calsequestrin 2, and the antibody-binding protein ZZ. However, the stability of this fusion protein was not sufficiently high for industrial use because the antibody recovery yield decreased to 60% after being reused 10 times. To identify a more stable calsequestrin (CSQ), we calculated Rosetta energy values for the folding stabilities of various CSQ homologs and selected human CSQ1 (hCSQ1) with lowest energy value (-992.6) as the new CSQ platform. We also identified that the linker sequence between ZZ and CSQ was vulnerable to proteases and alkaline pH by N-terminal protein sequencing. Therefore, we changed the linker to four asparagine (4N) sequences, which were shorter and less flexible than the previous glycine-rich linker. The new version of ZZ-CSQ, ZZ-4N-hCSQ1, was stable in a protease-containing conditioned medium obtained from the cultured Chinese hamster ovary cell or high pH condition (0.1M sodium hydroxide) for more than 5 days and could be reused at least 25 times for antibody purification without loss of recovery yield. The antibodies purified by ZZ-4N-hCSQ1 precipitation also showed greater purity (~33.6-fold lower host cell DNA and ~6.4-fold lower host cell protein) than those purified by protein A chromatography. These data suggest that ZZ-4N-hCSQ1 precipitation is more efficient and can achieve cost-effectiveness of up to 12.5-fold cheaper than previous antibody purification methods and can lower the production costs of therapeutic antibodies.

摘要

亲和沉淀是一种很有吸引力的蛋白质纯化方法,因为它有很多优点,包括快速捕获目标蛋白、处理简单、特异性高、易于放大等。我们之前报道了一种使用 Ca 依赖性沉淀的强大抗体纯化方法,该方法使用 ZZ-hCSQ2(人钙结合蛋白 2 的融合蛋白)和抗体结合蛋白 ZZ 进行融合蛋白沉淀。然而,这种融合蛋白的稳定性不够高,无法用于工业用途,因为重复使用 10 次后,抗体回收率下降到 60%。为了鉴定更稳定的钙结合蛋白(CSQ),我们计算了各种 CSQ 同源物的罗莎塔能量值,并选择能量值最低的人钙结合蛋白 1(hCSQ1)(-992.6)作为新的 CSQ 平台。我们还通过 N 端蛋白测序发现,ZZ 和 CSQ 之间的连接序列易受蛋白酶和碱性 pH 的影响。因此,我们将连接序列更改为四个天冬酰胺(4N)序列,这些序列比以前的富含甘氨酸的连接序列更短、更灵活。新版本的 ZZ-CSQ,即 ZZ-4N-hCSQ1,在含有蛋白酶的条件培养基中或在高 pH 条件(0.1M 氢氧化钠)中稳定超过 5 天,并且可以至少重复使用 25 次进行抗体纯化,而不会损失回收率。用 ZZ-4N-hCSQ1 沉淀纯化的抗体也显示出比用蛋白 A 层析纯化的抗体更高的纯度(宿主细胞 DNA 低约 33.6 倍,宿主细胞蛋白低约 6.4 倍)。这些数据表明,与之前的抗体纯化方法相比,ZZ-4N-hCSQ1 沉淀更有效,成本效益高 12.5 倍,可以降低治疗性抗体的生产成本。

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