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Arginylation installed by arginyltransferase 1 (ATE1) features an addition of arginine (Arg) to the reactive amino acids (e.g., Glu and Asp) at the protein N-terminus or side chain. Systemic removal of arginylation after ATE1 knockout (KO) in mouse models resulted in heart defects leading to embryonic lethality. The biological importance of arginylation has motivated the discovery of arginylation sites on proteins using bottom-up approaches. While bottom-up proteomics is powerful in localizing peptide arginylation, it lacks the ability to quantify proteoforms at the protein level. Here we developed a top-down proteomics workflow for characterizing and quantifying calreticulin (CALR) arginylation. To generate fully arginylated CALR (R-CALR), we have inserted an R residue after the signaling peptide (AA1-17). Upon overexpression in ATE1 KO cells, CALR and R-CALR were purified by affinity purification and analyzed by LCMS in positive mode. Both proteoforms showed charge states ranging from 27 to 68 with charge 58 as the most intense charge state. Their MS2 spectra from electron-activated dissociation (EAD) showed preferential fragmentation at the protein -terminals which yielded sufficient ions facilitating precise localization of the arginylation sites. The calcium-binding domain (CBD) gave minimum characteristic ions possibly due to the abundant presence of >100 D and E residues. Ultraviolet photodissociation (UVPD) compared with EAD and ETD significantly improved the sequence coverage of CBD. This method can identify and quantify CALR arginylation at absence, endogenous (low), and high levels. To our knowledge, our work is the first application of top-down proteomics in characterizing post-translational arginylation and .
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http://dx.doi.org/10.1021/acs.analchem.4c04141 | DOI Listing |
Food Res Int
November 2025
College of Agriculture, Henan University, Kaifeng 475004, China; School of Food and Pharmacy, Xuchang University, Xuchang 461000, China. Electronic address:
High- and low-protein diets have long been debated for their effects on body fat accumulation, which may stem from neglecting interactions with other macronutrients. This study investigates how the dietary carbohydrate-to-protein caloric ratio (CPCR) affects hepatic fat deposition via the IGF-1/PI3K/Akt signaling pathway. Within an isocaloric dietary framework, we evaluated the effects of varying CPCR (dietary fat held constant at 10 %) on hepatic fat accumulation in Sprague-Dawley rats over 8 weeks.
View Article and Find Full Text PDFJ Am Soc Mass Spectrom
September 2025
School of Life Sciences, The Chinese University of Hong Kong, Sha Tin, N.T., Hong Kong, 999077.
Electrospray ionization (ESI)-mass spectrometry (MS) is a key platform for analyzing post-translationally modified proteins. With continuous advances in MS instruments and data analysis methods, top-down analysis of intact proteoforms has become highly feasible. To accurately quantify proteoforms with varying post-translational modifications (PTMs), the influence of PTMs on the ESI-MS detection efficiency must be considered.
View Article and Find Full Text PDFAnal Bioanal Chem
September 2025
Department of Chemistry, School of Chemistry, Food and Pharmacy, University of Reading, Reading, RG6 6DX, UK.
Fungal pathogens pose a growing threat to global health, necessitating rapid and accurate identification methods. Here, liquid atmospheric pressure matrix-assisted laser desorption/ionisation (LAP-MALDI) mass spectrometry (MS) is applied to fast lipid and protein profiling of Candida albicans and Saccharomyces cerevisiae from cultured colonies. Species-specific lipid profiles were observed in the m/z 600-1100 range, dominated by phospholipids as confirmed by tandem mass spectrometry (MS/MS).
View Article and Find Full Text PDFProteomics
August 2025
Advanced Research Support Center, Ehime University, Ehime, Japan.
Top-down proteomics (TDP) is a powerful analytical approach for the highly sensitive measurement of intact proteoforms by mass spectrometry. However, its application to high molecular weight proteoforms remains challenging. Middle-down proteomics (MDP) offers a practical solution but requires pre-fractionation of the complex peptide mixture generated by limited digestion to successfully achieve trace-level peptide detection.
View Article and Find Full Text PDFProteomics
August 2025
Department of Chemistry, Zhejiang University, Hangzhou, China.
Top-down proteomics (TDP) is a powerful approach for characterizing intact protein molecules and their diverse proteoforms. Despite recent advances, current TDP software tools often suffer from fragmented workflows, steep learning curves for non-experts, or limited interactive visualization capabilities. To address these challenges, we introduce TDEase, an integrated analytical framework designed to streamline and enhance TDP data interpretation, with a current focus on integration with the TopPIC suite package for targeted proteoform characterization.
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