Abstract
AbstractA recent study demonstrated a substantial signal increase when employing a 0.5% acetic acid buffer additive instead of the traditional 0.1% formic acid used in shotgun proteomics. In this study I compare these two buffers for a dilution series of tryptic digests down to 20 picograms peptide on column on a TIMSTOF single cell proteome (SCP) system. I observe a comparable relative level of signal increase as previously reported, which translates to improvements in proteome coverage at every peptide load assessed. The relative increase in peptide identifications is more apparent at lower concentrations with a striking 1.8-fold more peptides identified at 20 pg peptide load, resulting in over 2,000 protein groups identified in 30 minutes on this system. These results translate well to isolated single human cancer cells allowing over 1,000 protein groups to be identified in single human cells processed using a simple one step method in standard 96-well plates.All vendor raw and processed data has been made publicly available atwww.massive.ucsd.eduand can be accessed as MSV000092563.Abstract graphic
Publisher
Cold Spring Harbor Laboratory
Reference16 articles.
1. Exploring Functional Protein Covariation across Single Cells Using NPOP;Genome Biol,2022
2. Proteomic Analysis of Single Mammalian Cells Enabled by Microfluidic Nanodroplet Sample Preparation and Ultrasensitive NanoLC-MS;Angew. Chemie Int,2018
3. Mund, A. ; Coscia, F. ; Kriston, A. ; Hollandi, R. ; Kovács, F. ; Brunner, A.-D. ; Migh, E. ; Schweizer, L. ; Santos, A. ; Bzorek, M. ; Naimy, S. ; Rahbek-Gjerdrum, L. M. ; Dyring-Andersen, B. ; Bulkescher, J. ; Lukas, C. ; Eckert, M. A. ; Lengyel, E. ; Gnann, C. ; Lundberg, E. ; Horvath, P. ; Mann, M. Deep Visual Proteomics Defines Single-Cell Identity and Heterogeneity. Nat. Biotechnol. 2022.
4. Meier, F. ; Brunner, A. D. ; Frank, M. ; Ha, A. ; Bludau, I. ; Voytik, E. ; Kaspar-Schoenefeld, S. ; Lubeck, M. ; Raether, O. ; Bache, N. ; Aebersold, R. ; Collins, B. C. ; Röst, H. L. ; Mann, M. DiaPASEF: Parallel Accumulation–Serial Fragmentation Combined with Data-Independent Acquisition. Nat. Methods 2020.
5. Single Cell Proteome Mapping of Tissue Heterogeneity Using Microfluidic Nanodroplet Sample Processing and Ultrasensitive LC-MS;J. Biomol. Tech,2019
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