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De novo analysis of protein N-terminal sequence utilizing MALDI signal enhancing derivatization with Br signature
Authors:Email author" target="_blank">Jong-Seo?KimEmail author  Jin-Su?Song  Yongju?Kim  Seung?Bum?Park  Email author" target="_blank">Hie-Joon?KimEmail author
Institution:(1) Department of Chemistry, Seoul National University, Seoul, 151-742, Republic of Korea;(2) Department of Biophysics and Chemical Biology, Seoul National University, Seoul, 151-742, Republic of Korea;(3) Present address: Biological Sciences Division, Pacific Northwest National Laboratory, Richland, WA 99352, USA
Abstract:De novo analysis of protein N-terminal sequence is important for identification of N-terminal proteolytic processing such as N-terminal methionine or signal peptide removal, or for the genome annotation of uncharacterized proteins. We introduce a de novo sequencing method of protein N terminus utilizing matrix-assisted laser desorption/ionization (MALDI) signal enhancing picolinamidination with bromine isotopic tag incorporated to the N terminus. The doublet signature of bromine in the tandem mass (MS/MS) spectrum distinguished N-terminal ion series from C-terminal ion series, facilitating de novo N-terminal sequencing of protein. The dual advantage of MALDI signal enhancement by the basic picolinamidine and b-ion selection aided by Br signature is demonstrated using a variety of peptides. The N-terminal sequences of myoglobin and hemoglobin as model proteins were determined by incorporating the Br tag to the N terminus of the proteins and obtaining a series of b-ions with Br signature by MS/MS analysis after chymotryptic digestion of the tagged proteins. The N-terminal peptide was selected for MS/MS analysis from the chymotryptic digest based on the Br signature in the mass spectrum. Identification of phosphorylation site as well as N-terminal sequencing of a phosphopeptide was straightforward.
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