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在治疗性抗体开发中早期识别异常聚集的突变和根本原因。

Early identification of unusually clustered mutations and root causes in therapeutic antibody development.

机构信息

Product Development, Global Product Development and Supply, Bristol-Myers Squibb Company, Devens, Massachusetts.

Research and Development, Bristol-Myers Squibb Company, Pennington, New Jersey.

出版信息

Biotechnol Bioeng. 2018 Sep;115(9):2377-2382. doi: 10.1002/bit.26728. Epub 2018 Jun 6.

Abstract

This study reports findings of an unusual cluster of mutations spanning 22 bp (base pairs) in a monoclonal antibody expression vector. It was identified by two orthogonal methods: mass spectrometry on expressed protein and next-generation sequencing (NGS) on the plasmid DNA. While the initial NGS analysis confirmed the designed sequence modification, intact mass analysis detected an additional mass of the antibody molecule expressed in CHO cells. The extra mass was eventually found to be associated with unmatched nucleotides in a distal region by checking full-length sequence alignment plots. Interestingly, the complementary sequence of the mutated sequence was a reverse sequence of the original sequence and flanked by two 10-bp reverse-complementary sequences, leading to an undesirable DNA recombination. The finding highlights the necessity of rigorous examination of expression vector design and early monitoring of molecule integrity at both DNA and protein levels to prevent clones from having sequence variants during cell line development.

摘要

本研究报告了在单克隆抗体表达载体中跨越 22bp(碱基对)的异常突变簇的发现结果。该突变簇通过两种正交方法鉴定:表达蛋白的质谱分析和质粒 DNA 的下一代测序(NGS)。虽然最初的 NGS 分析证实了设计的序列修饰,但完整质量分析检测到在 CHO 细胞中表达的抗体分子的额外质量。通过检查全长序列比对图,最终发现该额外质量与远端区域的不匹配核苷酸有关。有趣的是,突变序列的互补序列是原始序列的反向序列,并被两个 10bp 的反向互补序列包围,导致不良的 DNA 重组。这一发现强调了在细胞系开发过程中,有必要严格检查表达载体设计,并在 DNA 和蛋白质水平上早期监测分子完整性,以防止克隆出现序列变异。

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