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van der Hoeven, L. R.

Publications and source records attributed to van der Hoeven, L. R..

2 recordsLinked to original sources

Comparative Analysis of Lysine-Specific Peptidases for Optimizing Proteomics Workflows

This study presents a comparative analysis of three LysC homologues from Achromobacter lyticus, Pseudomonas aeruginosa, and Lysobacter enzymogenes for mass spectrometry-based proteomics. Utilizing a protein aggregation capture (PAC) workflow with HeLa cell lysate, we assessed the enzymes cleavage specificity, digestion efficiency, and performance across various experimental conditions. Results showed that while all three homologues exhbihited high cleavage specificity at lysine residues, A. lyticus LysC outperformed the two others with its superior peptide identification, digestion efficiency, and protein coverage, especially at short digestion times. Combination of A. lyticus LysC and trypsin demonstrated that importance of LysC for signifancanlty minimizing missed cleavage rates in tryptic digests. This study underscores A. lyticus LysCs potential as an optimal choice for enhancing mass spectrometry-based proteomics.

biochemistry↗

Hybrid-DIA: Intelligent Data Acquisition for Simultaneous Targeted and Discovery Phosphoproteomics in Single Spheroids

Achieving sufficient coverage of regulatory phosphorylation sites by mass spectrometry (MS)-based phosphoproteomics for signaling pathway reconstitution is challenging when analyzing tiny sample amounts. We present a novel hybrid data-independent acquisition (DIA) strategy (hybrid-DIA) that combines targeted and discovery proteomics through an Application Programming Interface (API) to dynamically intercalate DIA scans with accurate triggering of multiplexed tandem MS scans of predefined (phospho)peptide targets. By spiking-in heavy stable isotope labeled phosphopeptide standards covering seven major signaling pathways, we benchmarked hybrid-DIA against state-of-the-art targeted MS methods (i.e. SureQuant) using EGF-stimulated HeLa cells and found the quantitative accuracy and sensitivity to be comparable while hybrid-DIA also profiled the global phosphoproteome. To demonstrate the robustness, sensitivity and potential of hybrid-DIA, we profiled chemotherapeutic agents in single colon carcinoma multicellular spheroids and evaluated the difference of cancer cells in 2D vs 3D culture. Altogether, we showed that hybrid-DIA is the way-to-go method in highly sensitive phospho-proteomics experiments.

systems biology↗