化学
序列(生物学)
抗体
终端(电信)
计算生物学
色谱法
生物化学
遗传学
计算机科学
电信
生物
作者
Oliver Silerio,Miyang Li,Douglas S. Rehder,Huong Thi Thanh Le,Bo Jiang,Simon Letarte,Tawnya G. Flick
标识
DOI:10.1021/jasms.5c00208
摘要
Sequence variant analysis is critical for characterizing biologic therapeutics and ensuring product quality, consistency, and safety. During routine tryptic peptide mapping of an IgG1 monoclonal antibody therapeutic, we identified a novel variant with a +113 Da mass shift at the heavy chain C-terminus. This variant was present at an unusually high abundance of up to 1.5%. The initial hypotheses suggested a leucine/isoleucine (Leu/Ile) addition; however, HCD multistage tandem mass spectrometry revealed an unexpected two-amino acid substitution (Val-Ala). A synthetic peptide with the hypothesized sequence confirmed this novel sequence variant, exhibiting identical retention time and fragmentation patterns. Further investigation suggested aberrant mRNA splicing, involving a cryptic splice site near glycine-encoding codons in the expression constructs, as a potential underlying mechanism. These findings demonstrate the importance of high-resolution mass spectrometry and alternate fragmentation methods for resolving isobaric ambiguities and highlight the influence of codon optimization on sequence variant profiles.
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