Rapid identification of an antibody DNA construct rearrangement sequence variant by mass spectrometry

免疫球蛋白轻链 肽序列 质谱法 氨基酸 DNA 化学 串联质谱法 抗体 序列分析 生物 DNA测序 分子生物学 色谱法 生物化学 遗传学 基因
作者
R. Scott,Rich Rogers,Alain Balland,Lowell J. Brady
出处
期刊:mAbs [Landes Bioscience]
卷期号:6 (6): 1453-1463 被引量:20
标识
DOI:10.4161/mabs.36222
摘要

During cell line development for an IgG1 antibody candidate (mAb1), a C-terminal extension was identified in 2 product candidate clones expressed in CHO-K1 cell line. The extension was initially observed as the presence of anomalous new peaks in these clones after analysis by cation exchange chromatography (CEX-HPLC) and reduced capillary electrophoresis (rCE-SDS). Reduced mass analysis of these CHO-K1 clones revealed that a larger than expected mass was present on a sub-population of the heavy chain species, which could not be explained by any known chemical or post-translational modifications. It was suspected that this additional mass on the heavy chain was due to the presence of an additional amino acid sequence. To identify the suspected additional sequence, de novo sequencing in combination with proteomic searching was performed against translated DNA vectors for the heavy chain and light chain. Peptides unique to the clones containing the extension were identified matching short sequences (corresponding to 9 and 35 amino acids, respectively) from 2 non-coding sections of the light chain vector construct. After investigation, this extension was observed to be due to the re-arrangement of the DNA construct, with the addition of amino acids derived from the light chain vector non-translated sequence to the C-terminus of the heavy chain. This observation showed the power of proteomic mass spectrometric techniques to identify an unexpected antibody sequence variant using de novo sequencing combined with database searching, and allowed for rapid identification of the root cause for new peaks in the cation exchange and rCE-SDS assays.
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