Improved Nα-Acetylated Peptide Enrichment Following Dimethyl Labeling and SCX

乙酰化 化学 蛋白质组学 定量蛋白质组学 细胞培养中氨基酸的稳定同位素标记 等压标记 基因亚型 同位素标记 生物化学 质谱法 磷酸蛋白质组学 蛋白质组 色谱法 蛋白质磷酸化 有机化学 蛋白激酶A 基因
作者
Sin Hong Chen,Chiy Rong Chen,Shu Hui Chen,Ding Tzai Li,Jue‐Liang Hsu
出处
期刊:Journal of Proteome Research [American Chemical Society]
卷期号:12 (7): 3277-3287 被引量:24
标识
DOI:10.1021/pr400127j
摘要

Protein N-terminal acetylation is one of the most common modifications occurring co- and post-translationally on either eukaryote or prokaryote proteins. However, compared to other protein modifications, the physiological role of protein N-terminal acetylation is relatively unclear. To explore the biological functions of protein N-terminal acetylation, a robust and large-scale method for qualitative and quantitative analysis of this modification is required. Enrichment of Nα-acetylated peptides or depletion of the free N-terminal and internal tryptic peptides prior to analysis by mass spectrometry are necessary based on current technologies. This study demonstrated a simple strong cation exchange (SCX) fractionation method to selectively enrich Nα-acetylated tryptic peptides via dimethyl labeling without the need for tedious protective labeling and depleting procedures. This method was introduced for the comprehensive analysis of N-terminal acetylated proteins from HepG2 cells. Several hundred N-terminal acetylation sites were readily identified in a single SCX flow-through fraction. Moreover, the Nα-acetylated peptides of some protein isoforms were simultaneously observed in the SCX flow-through fraction, which indicated that this approach can be utilized to discriminate protein isoforms with very similar full sequences but different N-terminal sequences, such as β-actin/γ-actin, ERK1/ERK2, α-centractin/β-centractin, and ADP/ATP translocase 2 and 3. Compared to other methods, this method is relatively simple and can be directly implemented in a two-dimensional separation (SCX-RP)-mass spectrometry scheme for quantitative N-terminal proteomics using stable-isotope dimethyl labeling.
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