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新型肽配基用于抗体纯化,可更有效地清除宿主细胞蛋白杂质。

Novel peptide ligands for antibody purification provide superior clearance of host cell protein impurities.

机构信息

Department of Chemical and Biomolecular Engineering, North Carolina State University, Campus Box 7905, Raleigh, NC, 27695-7905, USA.

Department of Chemistry, North Carolina State University, Raleigh, NC, 27695-8204, USA.

出版信息

J Chromatogr A. 2020 Aug 16;1625:461237. doi: 10.1016/j.chroma.2020.461237. Epub 2020 May 23.

Abstract

The quest for ligands alternative to Protein A for the purification of monoclonal antibodies (mAbs) has been pursued for almost three decades. Yet, the IgG-binding peptides known to date still fall short of the host cell protein (HCP) logarithmic removal value (LRV) set by Protein A media (2.5-3.1). In this study, we present an integrated computational-experimental approach leading to the discovery of peptide ligands that provide HCP LRVs on par with Protein A. First, the screening of 60,000 peptide variants was performed using a high-throughput search algorithm to identify sequences that ensure IgG affinity binding. Select sequences WQRHGI, MWRGWQ, RHLGWF, and GWLHQR were then negatively screened in silico against a panel of model HCPs to ensure the selection of peptides with high binding selectivity. Candidate ligands WQRHGI and MWRGWQ were conjugated to chromatographic resins and characterized by isothermal binding and breakthrough assays to quantify static and dynamic binding capacity (Q and DBC), respectively. The resulting Q were 52.6 mg of IgG per mL of adsorbent for WQRHGI and 57.48 mg/mL for MWRGWQ, while the DBC (2 minutes residence time) were 30.1 mg/mL for WQRHGI and 36.4 mg/mL for MWRGWQ. Evaluation of the peptides by isothermal titration calorimetry (ITC) confirmed the binding energy predicted in silico, and an amino acid scanning study corroborated the affinity-like binding activity of the peptides. WQRHGI-WorkBeads resin was finally characterized by purification of a monoclonal antibody from a Chinese Hamster Ovary (CHO) cell culture harvest, affording a remarkable HCP LRV of 2.7, and consistent product yield and purity over 100 chromatographic cycles. These results demonstrate the potential of WQRHGI as an effective alternative to Protein A for antibody purification.

摘要

寻找替代 Protein A 用于单克隆抗体 (mAb) 纯化的配体已经进行了近三十年。然而,迄今为止已知的 IgG 结合肽仍然未能达到 Protein A 介质设定的宿主细胞蛋白 (HCP) 对数去除值 (LRV)(2.5-3.1)。在这项研究中,我们提出了一种集成的计算实验方法,用于发现能够与 Protein A 相媲美的 HCP LRV 的肽配体。首先,使用高通量搜索算法筛选了 60,000 种肽变体,以识别确保 IgG 亲和力结合的序列。然后,使用计算机筛选技术对 12 种模型 HCP 进行负筛选,选择具有高结合选择性的肽。选择序列 WQRHGI、MWRGWQ、RHLGWF 和 GWLHQR 然后与色谱树脂偶联,并通过等温结合和突破实验进行表征,分别量化静态和动态结合容量 (Q 和 DBC)。WQRHGI 和 MWRGWQ 的结果 Q 分别为每毫升吸附剂 52.6 mg IgG 和 57.48 mg/mL,而 DBC(2 分钟保留时间)分别为 30.1 mg/mL 和 36.4 mg/mL。通过等温滴定量热法 (ITC) 对肽进行评估证实了计算机预测的结合能,氨基酸扫描研究也证实了肽的类似亲和力结合活性。最后,通过从中国仓鼠卵巢 (CHO) 细胞培养物中纯化单克隆抗体来表征 WQRHGI-WorkBeads 树脂,得到了显著的 HCP LRV 为 2.7,并且在 100 个以上的色谱循环中保持一致的产物收率和纯度。这些结果表明 WQRHGI 作为 Protein A 用于抗体纯化的有效替代品具有潜力。

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