化学
等压标记
等压法
细胞培养中氨基酸的稳定同位素标记
试剂
定量蛋白质组学
蛋白质组
肽
胰蛋白酶化
蛋白质组学
色谱法
生物化学
胰蛋白酶
物理
物理化学
基因
酶
热力学
作者
Xiaolian Ning,Qidan Li,Jian Zi,Zhanlong Mei,Jie Liu,Yuxing Zhang,Mao Bi,Yan Ren,Xingang Liu,Chao Lv,Hequan Yao,Jianguo Sun,Feng Rao,Shuwei Li,Siqi Liu
标识
DOI:10.1021/acs.analchem.3c00235
摘要
Peptide labeling by isobaric tags is a powerful approach for the relative quantitative analysis of proteomes in multiple groups. There has been a revolution in the innovation of new isobaric reagents; however, great effort is being made to expand simultaneous labeling groups to identify more labeled peptides and reduce reporter ion signal suppression. We redesigned the original chemical structure of the deuterium isobaric amine-reactive tag developed in our laboratory. We optimized the synthetic pathway to create a new set of 16-plex isobaric tags (IBT-16plex). The novel reagent enabled almost complete labeling of peptides within 90 min, with all labeling reporter ions exhibiting comparable MS/MS signals. Compared to a typical 16plex reagent, TMTpro-16plex, the peptides and proteins identified by IBT-16plex in trypsinized HeLa cells were significantly increased by 14.8 and 8.6%, respectively. Moreover, differences in peptide abundance within 10-fold among multiple groups were barely suppressed in IBT-16plex, whereas the dynamic range in TMTpro-16plex-labeled groups was smaller. After quantitative examination of MCF7 cell proteins, IBT-16plex was confirmed as feasible and useful for evaluating protein responses of glucose-starved MCF7 cells to a glucose-rich medium.
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