日本質量分析学会 第71回質量分析総合討論会

演題概要

ポスター発表

第2日 5月16日(火)  P会場(ホワイエ,会議室1004-1007)

配位子交換クロマトグラフィーを用いたチロシンリン酸化ペプチド濃縮法の開発

(1京大院薬2医薬基盤健栄研)
o古屋翔梧1,2中田花菜1南部早紀1金尾英佑1,2小形公亮1杉山直幸1石濱泰1,2

Reversible protein phosphorylation of serine, threonine, and tyrosine residues is an essential post-translational modification of intracellular signal transduction. Among these, tyrosine phosphorylation is known to regulate the activity of key molecules involved in disease pathogenesis and drug targeting, such as receptor-type tyrosine kinases, but its intracellular abundance is only a few tenths that of serine and threonine phosphorylation, making it difficult to identify and quantify it on a large scale. In this study, we developed a method for selectively enriching tyrosine phosphopeptides by ligand exchange chromatography. Phosphopeptides enriched by titania chromatography from pervanadate-treated HeLa cell digests were used as samples and loaded onto a pipette-tip micro column packed with Phos-tag agarose resin with copper ion (II). The elution conditions were optimized by analyzing the percentage of tyrosine phosphopeptides in the elution fractions by LC/MS/MS. As a result, the number of tyrosine phosphopeptides identified was more than three times greater than without the Cu2+-Phos-tag column. The proportion of acidic amino acids and multiply phosphorylated peptides increased in the later elution fractions, and the phosphosites on the peptides tended to shift from the N-termini to the internal region.