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Nature Protocols|April 5, 2007
In-gel digestion for mass spectrometric characterization of proteins and proteomesAndrej Shevchenko, Henrik Tomas, Jan Havlis, et al.Molecular & Cellular Proteomics : MCP|January 18, 2006
Quantitative proteomic comparison of rat mitochondria from muscle, heart, and liverFrancesca Forner, Leonard J Foster, Stefano Campanaro, et al.Journal of Proteome Research|August 19, 2008
Phosphorylation of SUMO-1 occurs in vivo and is conserved through evolutionIvan Matic, Boris Macek, Maximiliane Hilger, et al.Molecular & Cellular Proteomics : MCP|February 26, 2003
Signaling initiated by overexpression of the fibroblast growth factor receptor-1 investigated by mass spectrometryAnders M Hinsby, Jesper V Olsen, Keiryn L Bennett, et al.Molecular & Cellular Proteomics : MCP|December 16, 2011
A framework for intelligent data acquisition and real-time database searching for shotgun proteomicsJohannes Graumann, Richard A Scheltema, Yong Zhang, et al.Nature Reviews. Molecular Cell Biology|July 24, 2014
The growing landscape of lysine acetylation links metabolism and cell signallingChunaram Choudhary, Brian T Weinert, Yuya Nishida, et al.Molecular & Cellular Proteomics : MCP|January 14, 2021
Plasma Proteomes Can Be Reidentifiable and Potentially Contain Personally Sensitive and Incidental FindingsPhilipp E Geyer, Sebastian Porsdam Mann, Peter V Treit, et al.Nature Methods|February 4, 2014
Minimal, encapsulated proteomic-sample processing applied to copy-number estimation in eukaryotic cellsNils A Kulak, Garwin Pichler, Igor Paron, et al.Journal of Proteome Research|April 27, 2010
Brain phosphoproteome obtained by a FASP-based method reveals plasma membrane protein topologyJacek R Wiśniewski, Nagarjuna Nagaraj, Alexandre Zougman, et al.Journal of Proteomics|July 23, 2009
Red blood cell (RBC) membrane proteomics--Part II: Comparative proteomics and RBC patho-physiologyErica M Pasini, Hans U Lutz, Matthias Mann, et al.Pageof 87