化学
肽
碎片(计算)
酰胺
肽键
质谱法
水解
环肽
组合化学
等压标记
串联质谱法
色谱法
蛋白质质谱法
有机化学
生物化学
操作系统
计算机科学
作者
Yu Feng,Athanasia Qirjollari,Maria V. Fawaz,Mark T. Cancilla,Raymond J. Gonzalez,Kara Pearson
标识
DOI:10.1021/acs.analchem.4c01372
摘要
Cyclic peptides are an emerging therapeutic modality over the past few decades. To identify drug candidates with sufficient proteolytic stability for oral administration, it is critical to pinpoint the amide bond hydrolysis sites, or soft spots, to better understand their metabolism and provide guidance on further structure optimization. However, the unambiguous characterization of cyclic peptide soft spots remains a significant challenge during early stage discovery studies, as amide bond hydrolysis forms a linearized isobaric sequence with the addition of a water molecule, regardless of the amide hydrolysis location. In this study, an innovative strategy was developed to enable the rapid and definitive identification of cyclic peptide soft spots by isotope-labeled reductive dimethylation and mass spectrometry fragmentation. The dimethylated immonium ion with enhanced MS signal at a distinctive m/z in MS/MS fragmentation spectra reveals the N-terminal amino acid on a linearized peptide sequence definitively and, thus, significantly simplifies the soft spot identification workflow. This approach has been evaluated to demonstrate the potential of isotope-labeled dimethylation to be a powerful analytical tool in cyclic peptide drug discovery and development.
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